
      
         
            Publications related to the GRACE missions (no abstracts, sorted by last name of first author)
         
      
      
      
      This is a list of publications related to the GRACE and GRACE-FO missions (no abstracts) which may be incomplete.
      In brackets the respective number of references is given.
      If you are missing a reference please contact Frank Flechtner or Volker Klemann.
      
      
      Remark to authors
      The following acknowledgement shall be added to any new GRACE related publication (paper, poster etc.):
      
         "Acknowledgement:
         We would like to thank the German Space Operations Center (GSOC) of the German Aerospace Center (DLR) for providing continuously
         and nearly 100% of the raw telemetry data of the twin GRACE satellites."
         

•
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            Sorted by Last Name of First Author •
            
      Sorted by Last Name of First Author 
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         - Šprlák, M. and Novák, P., 2014. Integral transformations of gradiometric data onto a GRACE type of observable.
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- A, G., Velicogna, I., Kimball, J. S., and Kim, Y., 2015. Impact of changes in GRACE derived terrestrial water storage
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         - Abdalla, A., Fashir, H., Ali, A., and Fairhead, D., 2012. Validation of recent GOCE/GRACE geopotential models over Khartoum
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         - Abelen, S., Seitz, F., Abarca-del-Rio, R., and Güntner, A., 2015. Droughts and Floods in the La Plata Basin in Soil Moisture
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         - Abera, W., Formetta, G., Brocca, L., and Rigon, R., 2017. Modeling the water budget of the Upper Blue Nile basin using the
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         - Amazirh, Abdelhakim, Ouassanouan, Youness, Bouimouass, Houssne, Baba, Mohamed Wassim, Bouras, El Houssaine, Rafik, Abdellatif,
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         - Amin, H., Bagherbandi, M., and Sjöberg, L. E., 2020. Quantifying barystatic sea-level change from satellite altimetry,
            GRACE and Argo observations over 2005-2016. Advances in Space Research, 65(8):1922–1940, doi:10.1016/j.asr.2020.01.029.
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            level changes around Greenland from GPS and tide gauge observations. Acta Oceanologica Sinica, 40(1):4–12, doi:10.1007/s13131-021-1719-0.
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         - Andersen, O. B., Seneviratne, S. I., Hinderer, J., and Viterbo, P., 2005. GRACE-derived terrestrial water storage
            depletion associated with the 2003 European heat wave. Geophysical Research Letters, 32:18405–+, doi:10.1029/2005GL023574.
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- Andersen, O. B. and Hinderer, J., 2005. Global inter-annual gravity changes from GRACE: Early results. Geophysical
            Research Letters, 32:1402–+, doi:10.1029/2004GL020948.
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            and GRACE Gravimetry for Studies of Annual Water Storage Variations in Bangladesh. Terrestrial, Atmospheric and Ocean Sciences,
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            groundwater, evapotranspiration, and precipitation. Geophysical Research Letters, 39:16401, doi:10.1029/2012GL052400.
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         - Andrew, R., Guan, H., and Batelaan, O., 2017. Estimation of GRACE water storage components by temporal decomposition. Journal
            of Hydrology, 552:341–350, doi:10.1016/j.jhydrol.2017.06.016.
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            Hydrology and Earth System Sciences, 21:4469–4478, doi:10.5194/hess-21-4469-2017.
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         - Andrews, Stuart B., Moore, Philip, and King, Matt. A., 2015. Mass change from GRACE: a simulated comparison of Level-1B analysis
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         - Andritsanos, Vassilios D., Arabatzi, Orthodoxia, Pagounis, Vassilios, and Tsakiri, Maria, 2019. Quality Control of Height
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         - Angerer, B., Ladstädter, F., Scherllin-Pirscher, B., Schwärz, M., Steiner, A. K., Foelsche, U., and Kirchengast,
            G., 2017. Quality aspects of the Wegener Center multi-satellite GPS radio occultation record OPSv5.6. Atmospheric Measurement
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         - anonymous, 2018. GRACE Follow-On vor dem Start. Physik in unserer Zeit, 49:61–61, doi:10.1002/piuz.201870207.
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            assessment in the Upper Jhelum River Basin-South Asia. Journal of Hydrology, 613:128294, doi:10.1016/j.jhydrol.2022.128294.
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            characteristics of accumulation rates in western Dronning Maud Land, Antarctica. Journal of Glaciology, 54(185):315–323,
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         - Anthes, R. A., 2011. Exploring Earth's atmosphere with radio occultation: contributions to weather, climate and space
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         - Antoni, Markus, 2022. A review of different mascon approaches for regional gravity field modelling since 1968. History
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         - Anyah, R. O., Forootan, E., Awange, J. L., and Khaki, M., 2018. Understanding linkages between global climate indices
            and terrestrial water storage changes over Africa using GRACE products. Science of the Total Environment, 635:1405–1416,
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         - Aon, Suvro, Nandi, Subimal, Sen, Shoubhik, and Biswas, Sujata, 2024. GRACE based groundwater drought evaluation of Ganga Basin
            and analysis of drought propagation using wavelet based quantitative approach. Science of the Total Environment, 951:175666,
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         - Aparicio, J. M., Deblonde, G., Garand, L., and Laroche, S., 2009. Signature of the atmospheric compressibility factor
            in COSMIC, CHAMP, and GRACE radio occultation data. Journal of Geophysical Research (Atmospheres), 114(D13):16114–+,
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         - Apel, Heiko, Gouweleeuw, Ben, Gafurov, Abror, and Güntner, Andreas, 2019. Forecast of seasonal water availability in
            Central Asia with near-real time GRACE water storage anomalies. Environmental Research Communications, 1(3):031006,
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            their contribution in refining the gravity and geoid at continental or regional scale. Journal of Geodesy, 84:643–660,
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         - Arciniega-Esparza, Saúl, Hernández-Espriú, José Antonio, Salinas-Calleros, Gabriel, Birkel, Christian,
            and Sanchez, Rosario, 2025. Assessing hydrological drought propagation through assimilation of GRACE for groundwater storage
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         - Arendt, A. A., Luthcke, S. B., Larsen, C. F., Abdalati, W., Krabill, W. B., and Beedle, M. J., 2008.
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            mascon trends?. Annals of Glaciology, 50:148–154, doi:10.3189/172756409787769753.
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- Arendt, A., Luthcke, S., Gardner, A., O'Neel, S., Hill, D., Moholdt, G., and Abdalati, W., 2013. Analysis of a GRACE global
            mascon solution for Gulf of Alaska glaciers. Journal of Glaciology, 59:913–924, doi:10.3189/2013JoG12J197.
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         - Argus, D. F. and Peltier, W. R., 2010. Constraining models of postglacial rebound using space geodesy: a detailed
            assessment of model ICE-5G (VM2) and its relatives. Geophysical Journal International, 181:697–723, doi:10.1111/j.1365-246X.2010.04562.x.
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- Argus, D. F., Blewitt, G., Peltier, W. R., and Kreemer, C., 2011. Rise of the Ellsworth mountains and parts of the
            East Antarctic coast observed with GPS. Geophysical Research Letters, 381:L16303, doi:10.1029/2011GL048025.
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            Ranges During Severe Drought From 2012 to 2015 Inferred From GPS. Journal of Geophysical Research (Solid Earth), 122(B11):10,
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- Argus, Donald F., Ratliff, Benjamin, DeMets, Charles, Borsa, Adrian A., Wiese, David N., Blewitt, Geoffrey, Crowley, John
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- Argus, Donald F., Peltier, W. Richard, Blewitt, Geoffrey, and Kreemer, Corné, 2021. The Viscosity of the Top Third
            of the Lower Mantle Estimated Using GPS, GRACE, and Relative Sea Level Measurements of Glacial Isostatic Adjustment. Journal
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            Space Geodesy. Geophysical Research Letters, 49(22):e2022GL099583, doi:10.1029/2022GL099583.
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- Argus, Donald F., Fu, Yuning, and Landerer, Felix W., 2014. Seasonal variation in total water storage in California inferred
            from GPS observations of vertical land motion. Geophysical Research Letters, 41(6):1971–1980, doi:10.1002/2014GL059570.
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         - Armanios, Daniel Erian and Fisher, Joshua B., 2014. Measuring water availability with limited ground data: assessing the feasibility
            of an entirely remote-sensing-based hydrologic budget of the Rufiji Basin, Tanzania, using TRMM, GRACE, MODIS, SRB, and AIRS.
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         - Armitage, T. W. K., Bacon, S., Ridout, A. L., Thomas, S. F., Aksenov, Y., and Wingham, D. J., 2016.
            Arctic sea surface height variability and change from satellite radar altimetry and GRACE, 2003-2014. Journal of Geophysical
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         - Arnold, Daniel, Montenbruck, Oliver, Hackel, Stefan, and Sosnica, Krzysztof, 2019. Satellite laser ranging to low Earth orbiters:
            orbit and network validation. Journal of Geodesy, 93(11):2315–2334, doi:10.1007/s00190-018-1140-4.
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- Arnold, Daniel, Bertone, Stefano, Jäggi, Adrian, Beutler, Gerhard, and Mervart, Leos, 2015. GRAIL gravity field determination
            using the Celestial Mechanics Approach. Icarus, 261:182–192, doi:10.1016/j.icarus.2015.08.015.
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         - Arras, C., Wickert, J., Beyerle, G., Heise, S., Schmidt, T., and Jacobi, C., 2008. A global climatology of ionospheric irregularities
            derived from GPS radio occultation. Geophysical Research Letters, 35:14809–+, doi:10.1029/2008GL034158.
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- Arras, C., Jacobi, C., and Wickert, J., 2009. Semidiurnal tidal signature in sporadic E occurrence rates derived from GPS
            radio occultation measurements at higher midlatitudes. Annales Geophysicae, 27:2555–2563, doi:10.5194/angeo-27-2555-2009.
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- Arras, C., Jacobi, C., Wickert, J., Heise, S., and Schmidt, T., 2010. Sporadic E signatures revealed from multi-satellite
            radio occultation measurements. Advances in Radio Science, 8:225–230, doi:10.5194/ars-8-225-2010.
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         - Arshad, Arfan, Mirchi, Ali, Samimi, Maryam, and Ahmad, Bashir, 2022. Combining downscaled-GRACE data with SWAT to improve
            the estimation of groundwater storage and depletion variations in the Irrigated Indus Basin (IIB). Science of the Total
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- Arshad, Arfan, Mirchi, Ali, Vilcaez, Javier, Umar Akbar, Muhammad, and Madani, Kaveh, 2024. Reconstructing high-resolution
            groundwater level data using a hybrid random forest model to quantify distributed groundwater changes in the Indus Basin.
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- Arshad, Arfan, Mirchi, Ali, Taghvaeian, Saleh, and AghaKouchak, Amir, 2024. Downscaled-GRACE Data Reveal Anthropogenic and
            Climate-Induced Water Storage Decline Across the Indus Basin. Water Resources Research, 60(7):e2023WR035882, doi:10.1029/2023WR035882.
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         - Arudra, A. K., Atmospheric density estimation using satellite precision orbit ephemerides. Ph.D. Thesis, University of
            Kansas, 2011.
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         - Aruna Kumari, Kondarathi, Surinaidu, Lagudu, Srinu, Yedavally, and Gahalaut, Kalpna, 2025. Geological heterogeneity and hydrological
            dynamics impact on triggered earthquake genesis in Deccan basaltic terrain of western India. Acta Geophysica, 73(4):3431–3440,
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         - Arungwa, I. D., Okeke, F. I., Moka, E. C., Kalu, I., and Okolie, C. J., 2023. Diagnosing the Terrestrial
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            Remote Sensing and Spatial Information Sciences, 48W6:33–39, doi:10.5194/isprs-archives-XLVIII-4-W6-2022-33-2023.
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         - Aryal, Saugat and Pokhrel, Yadu, 2025. Spatio-temporal heterogeneities in hydrologic dynamics across the Asian Water Tower.
            Journal of Hydrology, 662:133951, doi:10.1016/j.jhydrol.2025.133951.
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         - Asoka, Akarsh and Mishra, Vimal, 2020. Anthropogenic and Climate Contributions on the Changes in Terrestrial Water Storage
            in India. Journal of Geophysical Research (Atmospheres), 125(10):e32470, doi:10.1029/2020JD032470.
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- Asoka, Akarsh and Mishra, Vimal, 2021. A Strong Linkage between Seasonal Crop Growth and Groundwater Storage Variability in
            India. Journal of Hydrometeorology, 22(1):125–138, doi:10.1175/JHM-D-20-0085.1.
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         - Astafyeva, E., Zakharenkova, I., and Doornbos, E., 2015. Opposite hemispheric asymmetries during the ionospheric storm of
            29-31 August 2004. Journal of Geophysical Research (Space Physics), 120:697–714, doi:10.1002/2014JA020710.
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         - aus der Beek, T., Menzel, L., Rietbroek, R., Fenoglio-Marc, L., Grayek, S., Becker, M., Kusche, J., and Stanev, E. V.,
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         - Awange, Joseph L., Ogalo, Laban, Bae, Kwang-Ho, Were, Paul, Omondi, Philip, Omute, Paul, and Omullo, Monica, 2008. Falling
            Lake Victoria water levels: Is climate a contributing factor?. Climatic Change, 89(3-4):281–297, doi:10.1007/s10584-008-9409-x.
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- Awange, J. L., Anyah, R., Agola, N., Forootan, E., and Omondi, P., 2013. Potential impacts of climate and environmental change
            on the stored water of Lake Victoria Basin and economic implications. Water Resources Research, 49(12):8160–8173,
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- Awange, J. L., Gebremichael, M., Forootan, E., Wakbulcho, G., Anyah, R., Ferreira, V. G., and Alemayehu, T., 2014.
            Characterization of Ethiopian mega hydrogeological regimes using GRACE, TRMM and GLDAS datasets. Advances in Water Resources,
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- Awange, J. L., Forootan, E., Kuhn, M., Kusche, J., and Heck, B., 2014. Water storage changes and climate variability
            within the Nile Basin between 2002 and 2011. Advances in Water Resources, 73:1–15, doi:10.1016/j.advwatres.2014.06.010.
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- Awange, J. L., Khandu, Schumacher, M., Forootan, E., and Heck, B., 2016. Exploring hydro-meteorological drought patterns
            over the Greater Horn of Africa (1979-2014) using remote sensing and reanalysis products. Advances in Water Resources,
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- Bagherbandi, Mohammad and Tenzer, Robert, 2013. Geoid-to-Quasigeoid Separation Computed Using the GRACE/GOCE Global Geopotential
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            Fennoscandia. Journal of Geodesy, 99(1):2, doi:10.1007/s00190-024-01921-7.
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            Data assimilation of satellite-based terrestrial water storage changes into a hydrology land-surface model. Journal of
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            terrestrial water storage over Canada. Hydrological Processes, 34(2):175–188, doi:10.1002/hyp.13625.
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         - Bai, P., Liu, X., and Liu, C., 2018. Improving hydrological simulations by incorporating GRACE data for model calibration.
            Journal of Hydrology, 557:291–304, doi:10.1016/j.jhydrol.2017.12.025.
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            for exorheic basins in China using an improved estimate of terrestrial water storage change. Journal of Hydrology,
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- Bai, Xueding, Li, Weifeng, Lin, Xuemin, Han, Lijian, and Ming, Dongping, 2022. Reconciling regional water diversion and urban
            growth policies to protect groundwater across a large urban region in China. Journal of Hydrology, 612:128094, doi:10.1016/j.jhydrol.2022.128094.
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- Bai, Yinglun, Chen, Qiujie, Shen, Yunzhong, Xiao, Yun, and Zhang, Xingfu, 2024. Impacts of temporal resolution of atmospheric
            de-aliasing products on gravity field estimation. Geophysical Journal International, 237(3):1442–1458, doi:10.1093/gji/ggae125.
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- Bai, Bing, Yue, Ping, Ren, Xueyuan, Zhang, Qiang, Zhang, Jinyu, Yang, Jinhu, and Jiang, Youyan, 2024. Estimating Evapotranspiration
            in the Qilian Mountains Using GRACE/GRACE-FO Satellite Data. Remote Sensing, 16(11):1877, doi:10.3390/rs16111877.
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         - Bako, Michael, Elsaka, Basem, Kusche, Jürgen, and Fenoglio-Marc, Luciana, 2025. Evaluation of GOCE/GRACE and combined
            global geopotential models using GNSS/levelling data over Nigeria. Studia Geophysica et Geodaetica, 69(1):1–21,
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            Contributions to Global Ocean Tides for Satellite Gravimetry. Journal of Advances in Modeling Earth Systems, 14(11):e2022MS003193,
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         - Balmino, G., 2003. Gravity Field Recovery from GRACE: Unique Aspects of the High Precision Inter-Satellite Data and Analysis
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- Balmino, Georges, 2001. New space missions for mapping the Earth's gravity field. Academie des Sciences Paris Comptes Rendus
            Serie Physique Astrophysique, 2(9):1353–1359, doi:10.1016/S1296-2147(01)01269-0.
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- Balmino, G., 2009. Efficient propagation of error covariance matrices of gravitational models: application to GRACE and GOCE.
            Journal of Geodesy, 83:989–995, doi:10.1007/s00190-009-0317-2.
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            the satellite era. Environmental Research Letters, 13(6):063008, doi:10.1088/1748-9326/aac2f0.
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         - Bandikova, T., Flury, J., and Ko, U.-D., 2012. Characteristics and accuracies of the GRACE inter-satellite pointing. Advances
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- Bandikova, T. and Flury, J., 2014. Improvement of the GRACE star camera data based on the revision of the combination method.
            Advances in Space Research, 54:1818–1827, doi:10.1016/j.asr.2014.07.004.
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- Bandikova, T., 2015. The role of attitude determination for inter-satellite ranging, Deutsche Geod. Kommission, Reihe
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- Bandikova, Tamara, McCullough, Christopher, Kruizinga, Gerhard L., Save, Himanshu, and Christophe, Bruno, 2019. GRACE accelerometer
            data transplant. Advances in Space Research, 64(3):623–644, doi:10.1016/j.asr.2019.05.021.
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         - Banerjee, C. and Kumar, D. N., 2018. Assessment of Surface Water Storage trends for increasing groundwater areas in India.
            Journal of Hydrology, 562:780–788, doi:10.1016/j.jhydrol.2018.05.052.
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            water storage for India. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences,
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         - Bao, L. F., Piatanesi, A., Lu, Y., Hsu, H. T., and Zhou, X. H., 2005. Sumatra Tsunami Affects Observations
            by GRACE Satellites. EOS Transactions, 86:353–356, doi:10.1029/2005EO390002.
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         - Baranov, Alexey, Bagherbandi, Mohammad, and Tenzer, Robert, 2018. Combined Gravimetric-Seismic Moho Model of Tibet. Geosciences,
            8(12):461, doi:10.3390/geosciences8120461.
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         - Barbosa, Sergio A., Pulla, Sarva T., Williams, Gustavious P., Jones, Norman L., Mamane, Bako, and Sanchez, Jorge L., 2022.
            Evaluating Groundwater Storage Change and Recharge Using GRACE Data: A Case Study of Aquifers in Niger, West Africa. Remote
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            Correction: Barbosa et al. Evaluating Groundwater Storage Change and Recharge Using GRACE Data: A Case Study of Aquifers in
            Niger, West Africa. Remote Sens. 2022, 14, 1532. Remote Sensing, 15(5):1435, doi:10.3390/rs15051435.
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- Barbosa, Sergio A., Jones, Norman L., Williams, Gustavious P., Mamane, Bako, Begou, Jamila, Nelson, E. James, and Ames, Daniel
            P., 2023. Exploiting Earth Observations to Enable Groundwater Modeling in the Data-Sparse Region of Goulbi Maradi, Niger.
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            scenarios in India during recent decades. Hydrology and Earth System Sciences, 21:3041–3060, doi:10.5194/hess-21-3041-2017.
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         - Barletta, V. R., Sabadini, R., and Bordoni, A., 2008. Isolating the PGR signal in the GRACE data: impact on mass balance
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- Barletta, V. R. and Bordoni, A., 2009. Clearing observed PGR in GRACE data aimed at global viscosity inversion: Weighted
            Mass Trends technique. Geophysical Research Letters, 36:2305–+, doi:10.1029/2008GL036429.
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            data with a temporal decomposition approach. Global and Planetary Change, 82:51–64, doi:10.1016/j.gloplacha.2011.11.010.
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- Barletta, V. R., Sørensen, L. S., and Forsberg, R., 2013. Scatter of mass changes estimates at basin scale
            for Greenland and Antarctica. The Cryosphere, 7:1411–1432, doi:10.5194/tc-7-1411-2013.
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- Barletta, Valentina R., Bordoni, Andrea, and Khan, Shfaqat Abbas, 2024. GNET Derived Mass Balance and Glacial Isostatic Adjustment
            Constraints for Greenland. Geophysical Research Letters, 51(9):e2023GL106891, doi:10.1029/2023GL106891.
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         - Barnoud, Anne, Pfeffer, Julia, Guérou, Adrien, Frery, Marie-Laure, Siméon, Mathilde, Cazenave, Anny, Chen, Jianli,
            Llovel, William, Thierry, Virginie, Legeais, Jean-François, and Ablain, Michaël., 2021. Contributions of Altimetry
            and Argo to Non-Closure of the Global Mean Sea Level Budget Since 2016. Geophysical Research Letters, 48(14):e92824,
            doi:10.1029/2021GL092824.
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- Barnoud, Anne, Pfeffer, Julia, Cazenave, Anny, Fraudeau, Robin, Rousseau, Victor, and Ablain, Michaël, 2023. Revisiting
            the global mean ocean mass budget over 2005-2020. Ocean Science, 19(2):321–334, doi:10.5194/os-19-321-2023.
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         - Baroni, L., 2015. Ionosphere influence on success rate of GPS ambiguity resolution in a satellite formation flying. Journal
            of Physics Conference Series, 641(1):012020, doi:10.1088/1742-6596/641/1/012020.
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         - Basha, G., Kishore, P., Ratnam, M. V., Ravindra Babu, S., Velicogna, I., Jiang, J. H., and Ao, C. O., 2019.
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         - Baur, O., Kuhn, M., and Featherstone, W. E., 2009. GRACE-derived ice-mass variations over Greenland by accounting for
            leakage effects. Journal of Geophysical Research (Solid Earth), 114(B13):6407–+, doi:10.1029/2008JB006239.
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- Baur, O. and Sneeuw, N., 2011. Assessing Greenland ice mass loss by means of point-mass modeling: a viable methodology. Journal
            of Geodesy, 85:607–615, doi:10.1007/s00190-011-0463-1.
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- Baur, O., 2012. On the computation of mass-change trends from GRACE gravity field time-series. Journal of Geodynamics,
            61:120–128, doi:10.1016/j.jog.2012.03.007.
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- Baur, O., Kuhn, M., and Featherstone, W. E., 2013. Continental mass change from GRACE over 2002-2011 and its impact on
            sea level. Journal of Geodesy, 87(2):117–125, doi:10.1007/s00190-012-0583-2.
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- Baur, O., 2013. Greenland mass variation from time-variable gravity in the absence of GRACE. Geophysical Research Letters,
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- Baur, O., Bock, H., Höck, E., Jäggi, A., Krauss, S., Mayer-Gürr, T., Reubelt, T., Siemes, C., and Zehentner,
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            using the acceleration approach. Advances in Space Research, 50(3):385–396, doi:10.1016/j.asr.2012.04.022.
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            discharge and glacier mass balance in the Gulf of Alaska watershed. Water Resources Research, 52:3888–3909, doi:10.1002/2015WR018457.
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         - Becker, Mélanie, LLovel, William, Cazenave, Anny, Güntner, Andreas, and Crétaux, Jean-François,
            2010. Recent hydrological behavior of the East African great lakes region inferred from GRACE, satellite altimetry and rainfall
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- Becker, M., Meyssignac, B., Xavier, L., Cazenave, A., Alkama, R., and Decharme, B., 2011. Past terrestrial water storage (1980-2008)
            in the Amazon Basin reconstructed from GRACE and in situ river gauging data. Hydrology and Earth System Sciences, 15:533–546,
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- Becker, S., Freiwald, G., Losch, M., and Schuh, W.-D., 2012. Rigorous fusion of gravity field, altimetry and stationary ocean
            models. Journal of Geodynamics, 59:99–110, doi:10.1016/j.jog.2011.07.006.
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- Becker, S., Losch, M., Brockmann, J. M., Freiwald, G., and Schuh, W.-D., 2014. A Tailored Computation of the Mean Dynamic
            Topography for a Consistent Integration into Ocean Circulation Models. Surveys in Geophysics, 35:1507–1525, doi:10.1007/s10712-013-9272-9.
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- Becker, M., Papa, F., Frappart, F., Alsdorf, D., Calmant, S., da Silva, J. S., Prigent, C., and Seyler, F., 2018. Satellite-based
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- Becker, Richard H., 2014. The Stalled Recovery of the Iraqi Marshes. Remote Sensing, 6(2):1260–1274, doi:10.3390/rs6021260.
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         - Behrangi, A., Gardner, A. S., Reager, J. T., and Fisher, J. B., 2017. Using GRACE to constrain precipitation
            amount over cold mountainous basins. Geophysical Research Letters, 44:219–227, doi:10.1002/2016GL071832.
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- Behrangi, A., Gardner, A., Reager, J. T., Fisher, J. B., Yang, D., Huffman, G. J., and Adler, R. F., 2018.
            Using GRACE to Estimate Snowfall Accumulation and Assess Gauge Undercatch Corrections in High Latitudes. Journal of Climate,
            31:8689–8704, doi:10.1175/JCLI-D-18-0163.1.
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- Behrangi, Ali, Singh, Alka, Song, Yang, and Panahi, Milad, 2019. Assessing Gauge Undercatch Correction in Arctic Basins in
            Light of GRACE Observations. Geophysical Research Letters, 46(20):11,358–11,366, doi:10.1029/2019GL084221.
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- Behrangi, Ali, Gardner, Alex S., and Wiese, David N., 2020. Comparative analysis of snowfall accumulation over Antarctica
            in light of Ice discharge and gravity observations from space. Environmental Research Letters, 15(10):104010, doi:10.1088/1748-9326/ab9926.
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- Behrangi, Ali, Christensen, Matthew, Richardson, Mark, Lebsock, Matthew, Stephens, Graeme, Huffman, George J., Bolvin, David,
            Adler, Robert F., Gardner, Alex, Lambrigtsen, Bjorn, and Fetzer, Eric, 2016. Status of high-latitude precipitation estimates
            from observations and reanalyses. Journal of Geophysical Research (Atmospheres), 121(9):4468–4486, doi:10.1002/2015JD024546.
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         - Behzadpour, Saniya, Mayer-Gürr, Torsten, Flury, Jakob, Klinger, Beate, and Goswami, Sujata, 2019. Multiresolution wavelet
            analysis applied to GRACE range-rate residuals. Geoscientific Instrumentation, Methods and Data Systems, 8(2):197–207,
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- Behzadpour, Saniya, Mayer-Gürr, Torsten, and Krauss, Sandro, 2021. GRACE Follow On Accelerometer Data Recovery. Journal
            of Geophysical Research (Solid Earth), 126(5):e21297, doi:10.1029/2020JB021297.
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         - Beighley, R. E., Ray, R. L., He, Y., Lee, H., Schaller, L., Andreadis, K. M., Durand, M., Alsdorf, D. E.,
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         - Belda, S., Garc\'ıa-Garc\'ıa, D., and Ferrándiz, J. M., 2015. On the decorrelation filtering of RL05
            GRACE data for global applications. Geophysical Journal International, 200:173–184, doi:10.1093/gji/ggu386.
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         - Belonenko, T. V. and Fedorov, A. M., 2018. Steric Level Fluctuations and Deep Convection in the Labrador and Irminger
            Seas. Izvestiya Atmospheric and Oceanic Physics, 54:1039–1049, doi:10.1134/S0001433818090086.
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- Belonenko, T. V. and Koldunov, A. V., 2019. Trends of Steric Sea Level Oscillations in the North Atlantic. Izvestiya
            Atmospheric and Oceanic Physics, 55(9):1106–1113, doi:10.1134/S0001433819090081.
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         - Benahmeddaho, S., Mendas, A., Fairhead, J., and Derkaoui, A., 2009. Impact of the new GRACE Geopotential Model and SRTM data
            on the geoid modelling in Algeria. Journal of Geodynamics, 47:63–71, doi:10.1016/j.jog.2008.07.006.
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         - Bender, P. L., Nerem, R. S., and Wahr, J. M., 2003. Possible Future Use of Laser Gravity Gradiometers. Space
            Science Reviews, 108:385–392, doi:10.1023/A:1026100130397.
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            the Antarctic Ice Sheet. Geophysical Research Letters, 46(23):13,862–13,871, doi:10.1029/2019GL084466.
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         - Boening, C., Lee, T., and Zlotnicki, V., 2011. A record-high ocean bottom pressure in the South Pacific observed by GRACE.
            Geophysical Research Letters, 38:4602–+, doi:10.1029/2010GL046013.
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- Boening, C., Willis, J. K., Landerer, F. W., Nerem, R. S., and Fasullo, J., 2012. The 2011 La Niña:
            So strong, the oceans fell. Geophysical Research Letters, 39:19602, doi:10.1029/2012GL053055.
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- Boening, C., Lebsock, M., Landerer, F., and Stephens, G., 2012. Snowfall-driven mass change on the East Antarctic ice sheet.
            Geophysical Research Letters, 39:21501, doi:10.1029/2012GL053316.
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         - Boergens, E., Rangelova, E., Sideris, M. G., and Kusche, J., 2014. Assessment of the capabilities of the temporal and
            spatiotemporal ICA method for geophysical signal separation in GRACE data. Journal of Geophysical Research (Solid Earth),
            119:4429–4447, doi:10.1002/2013JB010452.
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- Boergens, Eva, Güntner, Andreas, Dobslaw, Henryk, and Dahle, Christoph, 2020. Quantifying the Central European Droughts
            in 2018 and 2019 With GRACE Follow-On. Geophysical Research Letters, 47(14):e87285, doi:10.1029/2020GL087285.
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- Boergens, Eva, Kvas, Andreas, Eicker, Annette, Dobslaw, Henryk, Schawohl, Lennart, Dahle, Christoph, Murböck, Michael,
            and Flechtner, Frank, 2022. Uncertainties of GRACE-Based Terrestrial Water Storage Anomalies for Arbitrary Averaging Regions.
            Journal of Geophysical Research (Solid Earth), 127(2):e22081, doi:10.1029/2021JB022081.
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- Boergens, Eva, Güntner, Andreas, Sips, Mike, Schwatke, Christian, and Dobslaw, Henryk, 2024. Interannual Variations Of
            Terrestrial Water Storage In The East African Rift Region. Hydrology and Earth System Sciences, 28:4733–4754,
            doi:10.5194/hess-28-4733-2024.
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- Boergens, Eva, Dahle, C., Dobslaw, H., Sasgen, I., Reißland, S., and Flechtner, Frank, 2020. Globale Massenverteilungen
            aus Satellitengravimetrie: Das interaktive Datenportal GravIS. ZfV : Zeitschrift für Geodäsie, Geoinformation
            und Landmanagement, 145(5), doi:10.12902/zfv-0316-2020.
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         - Bolaños, Silvana, Salazar, Juan F., Betancur, Teresita, and Werner, Micha, 2021. GRACE reveals depletion of water storage
            in northwestern South America between ENSO extremes. Journal of Hydrology, 596:125687, doi:10.1016/j.jhydrol.2020.125687.
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         - Bolaños Chavarr\'ıa, Silvana, Werner, Micha, and Salazar, Juan Fernando, 2022. Benchmarking global hydrological
            and land surface models against GRACE in a medium-sized tropical basin. Hydrology and Earth System Sciences, 26(16):4323–4344,
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         - Bond, P., 2003. Gravity map from GRACE. Astronomy and Geophysics, 44:4–4.
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         - Boniface, Claude and Bruinsma, Sean, 2021. Uncertainty quantification of the DTM2020 thermosphere model. Journal of Space
            Weather and Space Climate, 11:53, doi:10.1051/swsc/2021034.
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         - Bonin, J. A. and Chambers, D. P., 2011. Evaluation of high-frequency oceanographic signal in GRACE data: Implications
            for de-aliasing. Geophysical Research Letters, 381:L17608, doi:10.1029/2011GL048881.
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- Bonin, J. A., Bettadpur, S., and Tapley, B. D., 2012. High-frequency signal and noise estimates of CSR GRACE RL04.
            Journal of Geodesy, 86:1165–1177, doi:10.1007/s00190-012-0572-5.
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- Bonin, J. and Chambers, D., 2013. Uncertainty estimates of a GRACE inversion modelling technique over Greenland using a simulation.
            Geophysical Journal International, 194:212–229, doi:10.1093/gji/ggt091.
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- Bonin, J. A. and Chambers, D. P., 2015. Quantifying the resolution level where the GRACE satellites can separate
            Greenland's glacial mass balance from surface mass balance. The Cryosphere, 9:1761–1772, doi:10.5194/tc-9-1761-2015.
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- Bonin, J. A., Chambers, D. P., and Cheng, M., 2018. Using satellite laser ranging to measure ice mass change in
            Greenland and Antarctica. The Cryosphere, 12:71–79, doi:10.5194/tc-12-71-2018.
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- Bonin, Jennifer A. and Save, Himanshu, 2020. Evaluation of sub-monthly oceanographic signal in GRACE ``daily'' swath series
            using altimetry. Ocean Science, 16(2):423–434, doi:10.5194/os-16-423-2020.
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- Bonin, J. A. and Save, H., 2022. Using GRACE to Improve Altimetry's Ocean De-Aliasing Model. Journal of Geophysical
            Research (Oceans), 127(1):e17711, doi:10.1029/2021JC017711.
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         - Böning, C., Timmermann, R., Macrander, A., and Schröter, J., 2008. A pattern-filtering method for the determination
            of ocean bottom pressure anomalies from GRACE solutions. Geophysical Research Letters, 35:18611–+, doi:10.1029/2008GL034974.
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- Böning, C., Timmermann, R., Danilov, S., and Schröter, J., 2010. Antarctic Circumpolar Current Transport Variability
            in GRACE Gravity Solutions and Numerical Ocean Model Simulations. In Flechtner, F., Gruber, T., Güntner, A., Mandea,
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         - Bonsor, H. C., Mansour, M. M., MacDonald, A. M., Hughes, A. G., Hipkin, R. G., and Bedada, T., 2010.
            Interpretation of GRACE data of the Nile Basin using a groundwater recharge model. Hydrology and Earth System Sciences
            Discussions, 7:4501–4533, doi:10.5194/hessd-7-4501-2010.
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- Bonsor, H., Shamsudduha, M., Marchant, B., MacDonald, A., and Taylor, R., 2018. Seasonal and Decadal Groundwater Changes in
            African Sedimentary Aquifers Estimated Using GRACE Products and LSMs. Remote Sensing, 10:904, doi:10.3390/rs10060904.
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         - Borghi, A., Carrion, D., and Sona, G., 2007. Validation and fusion of different databases in preparation of high-resolution
            geoid determination. Geophysical Journal International, 171:539–549, doi:10.1111/j.1365-246X.2007.03541.x.
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- Borghi, Alessandra, Barzaghi, Riccardo, Al-Bayari, Omar, and Al Madani, Suhail, 2020. Centimeter Precision Geoid Model for
            Jeddah Region (Saudi Arabia). Remote Sensing, 12(12):2066, doi:10.3390/rs12122066.
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         - Boronina, A. and Ramillien, G., 2008. Application of AVHRR imagery and GRACE measurements for calculation of actual evapotranspiration
            over the Quaternary aquifer (Lake Chad basin) and validation of groundwater models. Journal of Hydrology, 348:98–109,
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         - Bosch, W., Savcenko, R., Flechtner, F., Dahle, C., Mayer-Gürr, T., Stammer, D., Taguchi, E., and Ilk, K.-H., 2009. Residual
            ocean tide signals from satellite altimetry, GRACE gravity fields, and hydrodynamic modelling. Geophysical Journal International,
            178:1185–1192, doi:10.1111/j.1365-246X.2009.04281.x.
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         - Bose, Indira, Hossain, Faisal, Eldardiry, Hisham, Ahmad, Shahryar, Biswas, Nishan K., Bhatti, Ahmad Zeeshan, Lee, Hyongki,
            Aziz, Mazharul, and Kamal Khan, Md. Shah, 2021. Integrating Gravimetry Data With Thermal Infra Red Data From Satellites to
            Improve Efficiency of Operational Irrigation Advisory in South Asia. Water Resources Research, 57(4):e28654, doi:10.1029/2020WR028654.
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         - Bouaziz, Laurène J. E., Fenicia, Fabrizio, Thirel, Guillaume, de Boer-Euser, Tanja, Buitink, Joost, Brauer, Claudia
            C., De Niel, Jan, Dewals, Benjamin J., Drogue, Gilles, Grelier, Benjamin, Melsen, Lieke A., Moustakas, Sotirios, Nossent,
            Jiri, Pereira, Fernando, Sprokkereef, Eric, Stam, Jasper, Weerts, Albrecht H., Willems, Patrick, Savenije, Hubert H. G.,
            and Hrachowitz, Markus, 2021. Behind the scenes of streamflow model performance. Hydrology and Earth System Sciences,
            25(2):1069–1095, doi:10.5194/hess-25-1069-2021.
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         - Bouih, Marie, Panet, Isabelle, Remy, Dominique, Longuevergne, Laurent, and Bonvalot, Sylvain, 2022. Deep mass redistribution
            prior to the 2010 Mw 8.8 Maule (Chile) Earthquake revealed by GRACE satellite gravity. Earth and Planetary Science Letters,
            584:117465, doi:10.1016/j.epsl.2022.117465.
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- Bouih, Marie, Barnoud, Anne, Yang, Chunxue, Storto, Andrea, Blazquez, Alejandro, Llovel, William, Fraudeau, Robin, and Cazenave,
            Anny, 2025. Regional sea level trend budget over 2004–2022. Ocean Science, 21(4):1425–1440, doi:10.5194/os-21-1425-2025.
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         - Boulahia, Ahmed Kamel, Garc\'ıa-Garc\'ıa, David, Vigo, M. Isabel, Trottini, Mario, and Sayol, Juan-Manuel, 2022.
            The Water Cycle of the Baltic Sea Region From GRACE/GRACE-FO Missions and ERA5 Data. Frontiers in Earth Science, 10:879148,
            doi:10.3389/feart.2022.879148.
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- Boulahia, Ahmed Kamel, García-García, David, Trottini, Mario, Sayol, Juan-Manuel, and Vigo, M. Isabel, 2024.
            Hydrological Cycle in the Arabian Sea Region from GRACE/GRACE-FO Missions and ERA5 Data. Remote Sensing, 16(19):3577,
            doi:10.3390/rs16193577.
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         - Bouman, J. and Koop, R., 2003. Geodetic Methods for Calibration of GRACE and GOCE. Space Science Reviews, 108:293–303,
            doi:10.1023/A:1026127409015.
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- Bouman, J. and Fuchs, M. J., 2012. GOCE gravity gradients versus global gravity field models. Geophysical Journal
            International, 189:846–850, doi:10.1111/j.1365-246X.2012.05428.x.
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- Bouman, J., Fuchs, M., Lieb, V., Bosch, W., Dettmering, D., and Schmidt, M., 2014. GOCE Gravity Gradients: Combination with
            GRACE and Satellite Altimetry. In Flechtner, F., Sneeuw, N., and Schuh, W.-D. (editors), Observation of the System Earth
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- Bouman, J., Fuchs, M., Ivins, E., Wal, W., Schrama, E., Visser, P., and Horwath, M., 2014. Antarctic outlet glacier mass change
            resolved at basin scale from satellite gravity gradiometry. Geophysical Research Letters, 41:5919–5926, doi:10.1002/2014GL060637.
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- Bouman, J., Ebbing, J., Fuchs, M., Sebera, J., Lieb, V., Szwillus, W., Haagmans, R., and Novak, P., 2016. Satellite gravity
            gradient grids for geophysics. Scientific Reports, 6:21050, doi:10.1038/srep21050.
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         - Bourda, G., 2005. Length of day and polar motion, with respect to temporal variations of the Earth gravity field. In Casoli,
            F., Contini, T., Hameury, J. M., and Pagani, L. (editors), SF2A-2005: Semaine de l'Astrophysique Francaise, pp.
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- Bourda, G., 2004. Earth Orientation and Temporal Variations of the Gravity Field. In Combes, F., Barret, D., Contini, T.,
            Meynadier, F., and Pagani, L. (editors), SF2A-2004: Semaine de l'Astrophysique Francaise, pp. 3–+.
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- Bourda, G., 2008. Length-of-day and space-geodetic determination of the Earth's variable gravity field. Journal of Geodesy,
            82:295–305, doi:10.1007/s00190-007-0180-y.
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         - Boy, J.-P. and Chao, B. F., 2005. Precise evaluation of atmospheric loading effects on Earth's time-variable gravity
            field. Journal of Geophysical Research (Solid Earth), 110(B9):8412–+, doi:10.1029/2002JB002333.
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- Boy, J.-P. and Chao, B. F., 2002. Time-variable gravity signal during the water impoundment of China's Three-Gorges Reservoir.
            Geophysical Research Letters, 29:53–1, doi:10.1029/2002GL016457.
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- Boy, J.-P., Hinderer, J., and de Linage, C., 2012. Retrieval of Large-Scale Hydrological Signals in Africa from GRACE Time-Variable
            Gravity Fields. Pure and Applied Geophysics, 169:1373–1390, doi:10.1007/s00024-011-0416-x.
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         - Braitenberg, C. and Ebbing, J., 2009. New insights into the basement structure of the West Siberian Basin from forward and
            inverse modeling of GRACE satellite gravity data. Journal of Geophysical Research (Solid Earth), 114(B13):6402–+,
            doi:10.1029/2008JB005799.
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- Braitenberg, C. and Ebbing, J., 2009. The GRACE-satellite gravity and geoid fields in analysing large-scale, cratonic or intracratonic
            basins. Geophysical Prospecting, 57:559–571, doi:10.1111/j.1365-2478.2009.00793.x.
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- Braitenberg, Carla and Pastorutti, Alberto, 2024. Detectability of Seamount Eruptions Through a Quantum Technology Gravity
            Mission MOCAST+: Hunga Tonga, Fani Maoré and Other Smaller Eruptions. Surveys in Geophysics, 45(4):1331–1361,
            doi:10.1007/s10712-024-09839-7.
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         - Breña-Naranjo, J. A., Kendall, A. D., and Hyndman, D. W., 2014. Improved methods for satellite-based
            groundwater storage estimates: A decade of monitoring the high plains aquifer from space and ground observations. Geophysical
            Research Letters, 41:6167–6173, doi:10.1002/2014GL061213.
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         - Briand, C., Doerksen, K., and Deleflie, F., 2021. Solar EUV-Enhancement and Thermospheric Disturbances. Space Weather,
            19(12):e02840, doi:10.1029/2021SW002840.
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         - Bringeland, Stephanie and Fotopoulos, Georgia, 2024. Analysis of gap filling techniques for GRACE/GRACE-FO terrestrial water
            storage anomalies in Canada. Journal of Hydrology, 630:130644, doi:10.1016/j.jhydrol.2024.130644.
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- Bringeland, S. and Fotopoulos, G., 2025. Mass Changes in a High-Latitude River Basin From Two Decades of GRACE/GRACE-FO. Journal
            of Geophysical Research (Earth Surface), 130(8):e2024JF008017, doi:10.1029/2024JF008017.
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         - Brockmann, J. M., 2015. On High Performance Computing in Geodesy - Applications in Global Gravity Field Determination,
            Deutsche Geod. Kommission, Reihe C 761, pp. 144, Bayer. Akademie der Wissenschaften, Munich.
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         - Broerse, D. B. T., Vermeersen, L. L. A., Riva, R. E. M., and van der Wal, W., 2011. Ocean contribution
            to co-seismic crustal deformation and geoid anomalies: Application to the 2004 December 26 Sumatra–Andaman earthquake.
            Earth and Planetary Science Letters, 305:341–349, doi:10.1016/j.epsl.2011.03.011.
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- Broerse, T., Riva, R., and Vermeersen, B., 2014. Ocean contribution to seismic gravity changes: the sea level equation for
            seismic perturbations revisited. Geophysical Journal International, 199:1094–1109, doi:10.1093/gji/ggu315.
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- Broerse, T., Riva, R., Simons, W., Govers, R., and Vermeersen, B., 2015. Postseismic GRACE and GPS observations indicate a
            rheology contrast above and below the Sumatra slab. Journal of Geophysical Research (Solid Earth), 120:5343–5361,
            doi:10.1002/2015JB011951.
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         - Brookfield, A. E., Hill, M. C., Rodell, M., Loomis, B. D., Stotler, R. L., Porter, M. E., and Bohling,
            G. C., 2018. In Situ and GRACE-Based Groundwater Observations: Similarities, Discrepancies, and Evaluation in the High
            Plains Aquifer in Kansas. Water Resources Research, 54:8034–8044, doi:10.1029/2018WR023836.
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         - Brown, N. J. and Tregoning, P., 2010. Quantifying GRACE data contamination effects on hydrological analysis in the Murray–Darling
            Basin, southeast Australia. Australian Journal of Earth Sciences, 57:329–335, doi:10.1080/08120091003619241.
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- Brown, Dana R. N., Brinkman, Todd J., Verbyla, David L., Brown, Caroline L., Cold, Helen S., and Hollingsworth, Teresa
            N., 2018. Changing River Ice Seasonality and Impacts on Interior Alaskan Communities. Weather, 10(4):625–640,
            doi:10.1175/wcas-d-17-0101.1.
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         - Bruinsma, S., Forbes, J. M., Nerem, R. S., and Zhang, X., 2006. Thermosphere density response to the 20-21 November
            2003 solar and geomagnetic storm from CHAMP and GRACE accelerometer data. Journal of Geophysical Research (Space Physics),
            111(A10):6303–+, doi:10.1029/2005JA011284.
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- Bruinsma, S. L. and Forbes, J. M., 2007. Storm-Time Equatorial Density Enhancements Observed by CHAMP and GRACE.
            Journal of Spacecraft and Rockets, 44:1154–1159, doi:10.2514/1.28134.
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- Bruinsma, S., Lemoine, J.-M., Biancale, R., and Valès, N., 2010. CNES/GRGS 10-day gravity field models (release 2)
            and their evaluation. Advances in Space Research, 45:587–601, doi:10.1016/j.asr.2009.10.012.
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- Bruinsma, S. L. and Forbes, J. M., 2010. Large-scale traveling atmospheric disturbances (LSTADs) in the thermosphere
            inferred from CHAMP, GRACE, and SETA accelerometer data. Journal of Atmospheric and Solar-Terrestrial Physics, 72:1057–1066,
            doi:10.1016/j.jastp.2010.06.010.
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- Bruinsma, S. L. and Forbes, J. M., 2010. Anomalous behavior of the thermosphere during solar minimum observed by
            CHAMP and GRACE. Journal of Geophysical Research (Space Physics), 115(A14):11323–+, doi:10.1029/2010JA015605.
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- Bruinsma, S. L., Förste, C., Abrikosov, O., Marty, J.-C., Rio, M.-H., Mulet, S., and Bonvalot, S., 2013. The new
            ESA satellite-only gravity field model via the direct approach. Geophysical Research Letters, 40:3607–3612, doi:10.1002/grl.50716.
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- Bruinsma, S. L., Förste, C., Abrikosov, O., Lemoine, J.-M., Marty, J.-C., Mulet, S., Rio, M.-H., and Bonvalot, S.,
            2014. ESA's satellite-only gravity field model via the direct approach based on all GOCE data. Geophysical Research Letters,
            41:7508–7514, doi:10.1002/2014GL062045.
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- Bruinsma, S., 2015. The DTM-2013 thermosphere model. Journal of Space Weather and Space Climate, 5(27):A1, doi:10.1051/swsc/2015001.
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- Bruinsma, S., Sutton, E., Solomon, S. C., Fuller-Rowell, T., and Fedrizzi, M., 2018. Space Weather Modeling Capabilities
            Assessment: Neutral Density for Orbit Determination at low Earth orbit. Space Weather, 16:1806–1816, doi:10.1029/2018SW002027.
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- Bruinsma, Sean, Boniface, Claude, Sutton, Eric K., and Fedrizzi, Mariangel, 2021. Thermosphere modeling capabilities assessment:
            geomagnetic storms. Journal of Space Weather and Space Climate, 11:12, doi:10.1051/swsc/2021002.
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- Bruinsma, Sean, Siemes, Christian, Emmert, John T., and Mlynczak, Martin G., 2023. Description and comparison of 21st century
            thermosphere data. Advances in Space Research, 72(12):5476–5489, doi:10.1016/j.asr.2022.09.038.
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- Bruinsma, Sean and Laurens, Sophie, 2024. Thermosphere model assessment for geomagnetic storms from 2001 to 2023. Journal
            of Space Weather and Space Climate, 14:28, doi:10.1051/swsc/2024027.
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            by modeling ocean bottom pressure uncertainties. Journal of Geophysical Research (Oceans), 116(C15):C08037, doi:10.1029/2010JC006617.
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            sea level change caused by Greenland Ice Sheet melting. Journal of Geodynamics, 59:219–225, doi:10.1016/j.jog.2011.06.001.
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            Sensors and GRACE. Sensors, 18(7):2082, doi:10.3390/s18072082.
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            densities during large magnetic storms. Journal of Atmospheric and Solar-Terrestrial Physics, 69:279–287, doi:10.1016/j.jastp.2006.05.027.
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            wind. Journal of Geophysical Research (Space Physics), 115(A14):6318–+, doi:10.1029/2009JA014585.
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- Burke, W. J., 2011. Solar cycle dependence of solar wind energy coupling to the thermosphere. Journal of Geophysical
            Research (Space Physics), 116(A15):A06302, doi:10.1029/2011JA016437.
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- Burke, W. J., 2008. Storm time energy budgets of the global thermosphere. Washington DC American Geophysical Union
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- Burke, W. J., Lin, C. S., Hagan, M. P., Huang, C. Y., Weimer, D. R., Wise, J. O., Gentile, L. C.,
            and Marcos, F. A., 2009. Storm time global thermosphere: A driven-dissipative thermodynamic system. Journal of Geophysical
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            its controls in the Congo Basin. Hydrology and Earth System Sciences, 24(8):4189–4211, doi:10.5194/hess-24-4189-2020.
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         - Buzzanga, Brett, Hamlington, Ben, Fasullo, John, Landerer, Felix, and Peidou, Athina, 2025. Interdecadal variability of terrestrial
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            Petra, 2020. Assessing global water mass transfers from continents to oceans over the period 1948-2016. Hydrology and Earth
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         - Cadden, D. D. H., A study of the Indian Ocean response to ENSO and IOD using satellite observations. Ph.D. Thesis,
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         - Cadio, C., Panet, I., Davaille, A., Diament, M., Métivier, L., and de Viron, O., 2011. Pacific geoid anomalies revisited
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- Cai, L., Aikio, A., Oyama, S., Ivchenko, N., Vanhamäki, H., Virtanen, I., Buchert, S., Mekuriaw, M. L., and Zhang,
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- Cai, Xitian, Yang, Zong-Liang, David, Cédric H., Niu, Guo-Yue, and Rodell, Matthew, 2014. Hydrological evaluation of
            the Noah-MP land surface model for the Mississippi River Basin. Journal of Geophysical Research (Atmospheres), 119(1):23–38,
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         - Çakan, Çağatay, Yımaz, M. Tuğrul, Dobslaw, Henryk, Ince, E. Sinem, Evrendilek, Fatih, Förste,
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            water storage products using hydrological drought recovery time. Hydrology and Earth System Sciences Discussions, 29(14):3359–3377,
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         - Calabia, A. and Jin, S., 2017. Thermospheric density estimation and responses to the March 2013 geomagnetic storm from GRACE
            GPS-determined precise orbits. Journal of Atmospheric and Solar-Terrestrial Physics, 154:167–179, doi:10.1016/j.jastp.2016.12.011.
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- Calabia, A. and Jin, S., 2016. New modes and mechanisms of thermospheric mass density variations from GRACE accelerometers.
            Journal of Geophysical Research (Space Physics), 121(A10):11, doi:10.1002/2016JA022594.
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- Calabia, Andres and Jin, Shuanggen, 2019. Solar cycle, seasonal, and asymmetric dependencies of thermospheric mass density
            disturbances due to magnetospheric forcing. Annales Geophysicae, 37(5):989–1003, doi:10.5194/angeo-37-989-2019.
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- Calabia, Andres, Tang, Geshi, and Jin, Shuanggen, 2019. Assessment of new thermospheric mass density model using NRLMSISE-00
            model, GRACE, Swarm-C, and APOD observations. Journal of Atmospheric and Solar-Terrestrial Physics, 199:105207, doi:10.1016/j.jastp.2020.105207.
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         - Calafat, F. M., Marcos, M., and Gomis, D., 2010. Mass contribution to Mediterranean Sea level variability for the period
            1948-2000. Global and Planetary Change, 73(3):193–201, doi:10.1016/j.gloplacha.2010.06.002.
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         - Caló, Fabiana, Notti, Davide, Galve, Jorge Pedro, Abdikan, Saygin, Görüm, Tolga, Pepe, Antonio, and Balik
            \cSanli, Füsun, 2017. DInSAR-Based Detection of Land Subsidence and Correlation with Groundwater Depletion in Konya Plain,
            Turkey. Remote Sensing, 9(1):83, doi:10.3390/rs9010083.
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         - Cambiotti, G., Bordoni, A., Sabadini, R., and Colli, L., 2011. GRACE gravity data help constraining seismic models of the
            2004 Sumatran earthquake. Journal of Geophysical Research (Solid Earth), 116(B15):B10403, doi:10.1029/2010JB007848.
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- Cambiotti, G. and Sabadini, R., 2012. A source model for the great 2011 Tohoku earthquake (M$_w$=9.1) from inversion of GRACE
            gravity data. Earth and Planetary Science Letters, 335:72–79, doi:10.1016/j.epsl.2012.05.002.
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- Cambiotti, G. and Sabadini, R., 2013. Gravitational seismology retrieving Centroid-Moment-Tensor solution of the 2011 Tohoku
            earthquake. Journal of Geophysical Research (Solid Earth), 118:183–194, doi:10.1029/2012JB009555.
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- Cambiotti, G. and Sabadini, R., 2015. On the response of the Earth to a fault system: its evaluation beyond the epicentral
            reference frame. Geophysical Journal International, 203:943–959, doi:10.1093/gji/ggv344.
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- Cambiotti, Gabriele, Douch, Karim, Cesare, Stefano, Haagmans, Roger, Sneeuw, Nicolas, Anselmi, Alberto, Marotta, Anna Maria,
            and Sabadini, Roberto, 2020. On Earthquake Detectability by the Next-Generation Gravity Mission. Surveys in Geophysics,
            41(5):1049–1074, doi:10.1007/s10712-020-09603-7.
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- Cambiotti, G., 2020. Joint estimate of the co-seismic 2011 Tohoku earthquake fault slip and post-seismic viscoelastic relaxation
            by GRACE data inversion. Geophysical Journal International, 220(2):1012–1022, doi:10.1093/gji/ggz485.
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         - Camici, Stefania, Giuliani, Gabriele, Brocca, Luca, Massari, Christian, Tarpanelli, Angelica, Hashemi Farahani, Hassan, Sneeuw,
            Nico, Restano, Marco, and Benveniste, Jérôme, 2022. Synergy between satellite observations of soil moisture and
            water storage anomalies for runoff estimation. Geoscientific Model Development, 15(18):6935–6956, doi:10.5194/gmd-15-6935-2022.
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         - Camilo, Björn Krause, Andrade, Pedro Lage, Eleutério, Julian Cardoso, and Rodrigues, André Ferreira, 2024.
            The importance of local observation wells, reanalysis, and satellite data on gravity anomaly, climate, and land use to improve
            groundwater management in the Urucuia aquifer system. Journal of South American Earth Sciences, 143:105018, doi:10.1016/j.jsames.2024.105018.
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         - Camp, M. V., Viron, O. d., Métivier, L., Meurers, B., and Francis, O., 2014. The quest for a consistent signal
            in ground and GRACE gravity time-series. Geophysical Journal International, 197:192–201, doi:10.1093/gji/ggt524.
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- Camp, M. V., Viron, O. d., Métivier, L., Meurers, B., and Francis, O., 2014. Reply to Comment on: `The quest
            for a consistent signal in ground and GRACE gravity time series', by Michel Van Camp, Olivier de Viron, Laurent Métivier,
            Bruno Meurers and Olivier Francis. Geophysical Journal International, 199:1818–1822, doi:10.1093/gji/ggu360.
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         - Cannelli, V., Melini, D., Piersanti, A., and Boschi, E., 2008. Postseismic signature of the 2004 Sumatra earthquake on low-degree
            gravity harmonics. Journal of Geophysical Research (Solid Earth), 113(B12):12414–+, doi:10.1029/2007JB005296.
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         - Cao, Y., Nan, Z., and Cheng, G., 2015. GRACE Gravity Satellite Observations of Terrestrial Water Storage Changes for Drought
            Characterization in the Arid Land of Northwestern China. Remote Sensing, 7:1021–1047, doi:10.3390/rs70101021.
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- Cao, Q., Clark, E. A., Mao, Y., and Lettenmaier, D. P., 2019. Trends and Interannual Variability in Terrestrial
            Water Storage Over the Eastern United States, 2003-2016. Water Resources Research, 55:1928–1950, doi:10.1029/2018WR023278.
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- Cao, Yanping, Xie, Zunyi, Woodgate, William, Ma, Xuanlong, Cleverly, Jamie, Pang, Yingjun, Qin, Fen, and Huete, Alfredo, 2022.
            Ecohydrological decoupling of water storage and vegetation attributed to China's large-scale ecological restoration programs.
            Journal of Hydrology, 615:128651, doi:10.1016/j.jhydrol.2022.128651.
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- Cao, Yanping and Roy, Shouraseni Sen, 2020. Spatial patterns of seasonal level trends of groundwater in India during 2002-2016.
            Weather, 75(4):123–128, doi:10.1002/wea.3370.
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- Cao, Chunyan, Zhu, Xiaoyu, Liu, Kedi, Liang, Yu, and Ma, Xuanlong, 2025. Satellite-Observed Arid Vegetation Greening and Terrestrial
            Water Storage Decline in the Hexi Corridor, Northwest China. Remote Sensing, 17(8):1361, doi:10.3390/rs17081361.
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         - Carabajal, Claudia C. and Boy, Jean-Paul, 2021. Lake and reservoir volume variations in South America from radar altimetry,
            ICESat laser altimetry, and GRACE time-variable gravity. Advances in Space Research, 68(2):652–671, doi:10.1016/j.asr.2020.04.022.
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         - Carlson, G., Werth, S., and Shirzaei, M., 2022. Joint Inversion of GNSS and GRACE for Terrestrial Water Storage Change in
            California. Journal of Geophysical Research (Solid Earth), 127(3):e23135, doi:10.1029/2021JB023135.
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         - Caron, L., Ivins, E. R., Larour, E., Adhikari, S., Nilsson, J., and Blewitt, G., 2018. GIA Model Statistics for GRACE
            Hydrology, Cryosphere, and Ocean Science. Geophysical Research Letters, 45:2203–2212, doi:10.1002/2017GL076644.
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- Caron, Lambert and Ivins, Erik R., 2020. A baseline Antarctic GIA correction for space gravimetry. Earth and Planetary
            Science Letters, 531:115957, doi:10.1016/j.epsl.2019.115957.
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         - Carraz, Olivier, Siemes, Christian, Massotti, Luca, Haagmans, Roger, and Silvestrin, Pierluigi, 2014. A Spaceborne Gravity
            Gradiometer Concept Based on Cold Atom Interferometers for Measuring Earth's Gravity Field. Microgravity Science and Technology,
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         - Carret, A., Johannessen, J. A., Andersen, O. B., Ablain, M., Prandi, P., Blazquez, A., and Cazenave, A., 2017. Arctic
            Sea Level During the Satellite Altimetry Era. Surveys in Geophysics, 38:251–275, doi:10.1007/s10712-016-9390-2.
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         - Carter, Elizabeth, Hain, Christopher, Anderson, Martha, and Steinschneider, Scott, 2018. A Water Balance-Based, Spatiotemporal
            Evaluation of Terrestrial Evapotranspiration Products across the Contiguous United States. Journal of Hydrometeorology,
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         - Carvalho Resende, T., Longuevergne, L., Gurdak, J. J., Leblanc, M., Favreau, G., Ansems, N., Van der Gun, J., Gaye, C. B.,
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         - Castellazzi, P., Martel, R., Rivera, A., Huang, J., Pavlic, G., Calderhead, A. I., Chaussard, E., Garfias, J., and Salas,
            J., 2016. Groundwater depletion in Central Mexico: Use of GRACE and InSAR to support water resources management. Water
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- Castellazzi, P., Longuevergne, L., Martel, R., Rivera, A., Brouard, C., and Chaussard, E., 2018. Quantitative mapping of groundwater
            depletion at the water management scale using a combined GRACE/InSAR approach. Remote Sensing of Environment, 205:408–418,
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            Impacts on Water Resources in the Canadian Rocky Mountains. Water Resources Research, 55(12):10,191–10,217, doi:10.1029/2018WR024295.
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         - Castle, S. L., Thomas, B. F., Reager, J. T., Rodell, M., Swenson, S. C., and Famiglietti, J. S.,
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         - Castruccio, F., Verron, J., Gourdeau, L., Brankart, J. M., and Brasseur, P., 2006. On the role of the GRACE mission in
            the joint assimilation of altimetric and TAO data in a tropical Pacific Ocean model. Geophysical Research Letters,
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         - Catalão, J. and Sevilla, M. J., 2009. Mapping the geoid for Iberia and the Macaronesian Islands using multi-sensor
            gravity data and the GRACE geopotential model. Journal of Geodynamics, 48:6–15, doi:10.1016/j.jog.2009.03.001.
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         - Causa, Flavia, Renga, Alfredo, and Grassi, Michele, 2018. Robust filter setting in GPS-based relative positioning of small-satellite
            LEO formations. Advances in Space Research, 62(12):3369–3382, doi:10.1016/j.asr.2018.03.020.
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         - Cazenave, A., Mercier, F., Bouille, F., and Lemoine, J. M., 1999. Global-scale interactions between the solid Earth and
            its fluid envelopes at the seasonal time scale. Earth and Planetary Science Letters, 171:549–559, doi:10.1016/S0012-821X(99)00172-7.
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- Cazenave, A. and Chen, J., 2010. Time-variable gravity from space and present-day mass redistribution in theEarth system.
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            learned? What are the new challenges?. Advances in Space Research, 62:1639–1653, doi:10.1016/j.asr.2018.07.017.
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         - Cerri, L., Lemoine, J. M., Mercier, F., Zelensky, N. P., and Lemoine, F. G., 2013. DORIS-based point mascons
            for the long term stability of precise orbit solutions. Advances in Space Research, 52:466–476, doi:10.1016/j.asr.2013.03.023.
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         - Cesanelli, A. and Guarracino, L., 2011. Estimation of regional evapotranspiration in the extended Salado Basin (Argentina)
            from satellite gravity measurements. Hydrogeology Journal, 19:629–639, doi:10.1007/s10040-011-0708-3.
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         - Cesare, S., Allasio, A., Anselmi, A., Dionisio, S., Mottini, S., Parisch, M., Massotti, L., and Silvestrin, P., 2016. The
            European way to gravimetry: From GOCE to NGGM. Advances in Space Research, 57:1047–1064, doi:10.1016/j.asr.2015.12.012.
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         - Chabbra, Namisha, Wade, Andrew R., Rose Rees, Emily, Sutton, Andrew J., Stochino, Alberto, Ward, Robert L., Shaddock, Daniel
            A., and McKenzie, Kirk, 2021. High stability laser locking to an optical cavity using tilt locking. Optics Letters,
            46(13):3199, doi:10.1364/OL.427615.
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         - Chambers, D. P., 2006. Observing seasonal steric sea level variations with GRACE and satellite altimetry. Journal
            of Geophysical Research (Oceans), 111(C10):3010–+, doi:10.1029/2005JC002914.
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- Chambers, D. P., Wahr, J., and Nerem, R. S., 2004. Preliminary observations of global ocean mass variations with
            GRACE. Geophysical Research Letters, 31:13310–+, doi:10.1029/2004GL020461.
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- Chambers, D. P., 2006. Evaluation of new GRACE time-variable gravity data over the ocean. Geophysical Research Letters,
            33:17603–+, doi:10.1029/2006GL027296.
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- Chambers, D. P., Tamisiea, M. E., Nerem, R. S., and Ries, J. C., 2007. Effects of ice melting on GRACE
            observations of ocean mass trends. Geophysical Research Letters, 34:5610–+, doi:10.1029/2006GL029171.
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- Chambers, D. P. and Willis, J. K., 2008. Analysis of large-scale ocean bottom pressure variability in the North
            Pacific. Journal of Geophysical Research (Oceans), 113(C12):11003–+, doi:10.1029/2008JC004930.
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- Chambers, D. P. and Willis, J. K., 2009. Low-frequency exchange of mass between ocean basins. Journal of Geophysical
            Research (Oceans), 114(C13):11008–+, doi:10.1029/2009JC005518.
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- Chambers, D. P. and Willis, J. K., 2010. A Global Evaluation of Ocean Bottom Pressure from GRACE, OMCT, and Steric-Corrected
            Altimetry. Journal of Atmospheric and Oceanic Technology, 27:1395–1402, doi:10.1175/2010JTECHO738.1.
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- Chambers, D. P., 2009. Calculating trends from GRACE in the presence of large changes in continental ice storage and
            ocean mass. Geophysical Journal International, 176:415–419, doi:10.1111/j.1365-246X.2008.04012.x.
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- Chambers, D. P., Wahr, J., Tamisiea, M. E., and Nerem, R. S., 2010. Ocean mass from GRACE and glacial isostatic
            adjustment. Journal of Geophysical Research (Solid Earth), 115(B14):11415–+, doi:10.1029/2010JB007530.
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- Chambers, D. P. and Schröter, J., 2011. Measuring ocean mass variability from satellite gravimetry. Journal of
            Geodynamics, 52:333–343, doi:10.1016/j.jog.2011.04.004.
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- Chambers, D. P. and Bonin, J. A., 2012. Evaluation of Release-05 GRACE time-variable gravity coefficients over the
            ocean. Ocean Science, 8:859–868, doi:10.5194/os-8-859-2012.
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- Chambers, D. P., Wahr, J., Tamisiea, M. E., and Nerem, R. S., 2012. Reply to comment by W. R. Peltier et al.
            on “Ocean mass from GRACE and glacial isostatic adjustment”. Journal of Geophysical Research (Solid Earth),
            117(B16):11404, doi:10.1029/2012JB009441.
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- Chambers, D. P., 2011. ENSO-correlated fluctuations in ocean bottom pressure and wind-stress curl in the North Pacific.
            Ocean Science, 7:685–692, doi:10.5194/os-7-685-2011.
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         - Chanard, K., Avouac, J. P., Ramillien, G., and Genrich, J., 2014. Modeling deformation induced by seasonal variations
            of continental water in the Himalaya region: Sensitivity to Earth elastic structure. Journal of Geophysical Research (Solid
            Earth), 119:5097–5113, doi:10.1002/2013JB010451.
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- Chanard, K., Fleitout, L., Calais, E., Rebischung, P., and Avouac, J.-P., 2018. Toward a Global Horizontal and Vertical Elastic
            Load Deformation Model Derived from GRACE and GNSS Station Position Time Series. Journal of Geophysical Research (Solid
            Earth), 123:3225–3237, doi:10.1002/2017JB015245.
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- Chanard, Kristel, Fleitout, Luce, Calais, Eric, Barbot, Sylvain, and Avouac, Jean-Philippe, 2018. Constraints on Transient
            Viscoelastic Rheology of the Asthenosphere From Seasonal Deformation. Geophysical Research Letters, 45(5):2328–2338,
            doi:10.1002/2017GL076451.
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         - Chandanpurkar, Hrishikesh A., Reager, John T., Famiglietti, James S., and Syed, Tajdarul H., 2017. Satellite- and Reanalysis-Based
            Mass Balance Estimates of Global Continental Discharge (1993-2015). Journal of Climate, 30(21):8481–8495, doi:10.1175/JCLI-D-16-0708.1.
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- Chandanpurkar, Hrishikesh A., Reager, John T., Famiglietti, James S., Nerem, R. Steven, Chambers, Don P., Lo, Min-Hui, Hamlington,
            Benjamin D., and Syed, Tajdarul H., 2021. The Seasonality of Global Land and Ocean Mass and the Changing Water Cycle. Geophysical
            Research Letters, 48(7):e91248, doi:10.1029/2020GL091248.
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- Chandanpurkar, Hrishikesh A., Hamlington, Benjamin D., and Reager, John T., 2022. Global Terrestrial Water Storage Reconstruction
            Using Cyclostationary Empirical Orthogonal Functions (1979–2020). Remote Sensing, 14(22):5677, doi:10.3390/rs14225677.
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- Chandanpurkar, Hrishikesh A., Famiglietti, James S., Gopalan, Kaushik, Wiese, David N., Wada, Yoshihide, Kakinuma, Kaoru,
            Reager, John T., and Zhang, Fan, 2025. Unprecedented continental drying, shrinking freshwater availability, and increasing
            land contributions to sea level rise. Science Advances, 11(30):eadx0298, doi:10.1126/sciadv.adx0298.
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         - Chang, L., Tang, H., Yi, S., and Sun, W., 2019. The Trend and Seasonal Change of Sediment in the East China Sea Detected by
            GRACE. Geophysical Research Letters, 46:1250–1258, doi:10.1029/2018GL081652.
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- Chang, Le, Tang, He, Wang, Qiuyu, and Sun, Wenke, 2019. Global thermosteric sea level change contributed by the deep ocean
            below 2000 m estimated by Argo and CTD data. Earth and Planetary Science Letters, 524:115727, doi:10.1016/j.epsl.2019.115727.
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- Chang, Le and Sun, Wenke, 2020. Greening Trends of Southern China Confirmed by GRACE. Remote Sensing, 12(2):328, doi:10.3390/rs12020328.
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- Chang, Li-Ling, Yuan, Ruiqiang, Gupta, Hoshin V., Winter, C. Larrabee, and Niu, Guo-Yue, 2020. Why Is the Terrestrial Water
            Storage in Dryland Regions Declining? A Perspective Based on Gravity Recovery and Climate Experiment Satellite Observations
            and Noah Land Surface Model With Multiparameterization Schemes Model Simulations. Water Resources Research, 56(11):e27102,
            doi:10.1029/2020WR027102.
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- Chang, Guobin, Qian, Nijia, and Bian, Shaofeng, 2023. Statistically optimal estimation of surface mass anomalies by directly
            using GRACE level-2 spherical harmonic coefficients as measurements. Geophysical Journal International, 233(3):1786–1799,
            doi:10.1093/gji/ggad024.
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- Chang, You-Soon, Rosati, Anthony J., and Vecchi, Gabriel A., 2010. Basin patterns of global sea level changes for 2004-2007.
            Journal of Marine Systems, 80(1):115–124, doi:10.1016/j.jmarsys.2009.11.003.
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         - Chanu, Ch Samurembi, Munagapati, Harika, Tiwari, V. M., Kumar, Arvind, and Elango, L., 2020. Use of GRACE time-series
            data for estimating groundwater storage at small scale. Journal of Earth System Science, 129(1):215, doi:10.1007/s12040-020-01465-2.
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         - Chao, B. F., 2003. Geodesy Is Not Just for Static Measurements Any More. EOS Transactions, 84:145–150, doi:10.1029/2003EO160001.
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- Chao, B. F., 2005. On inversion for mass distribution from global (time-variable) gravity field. Journal of Geodynamics,
            39:223–230, doi:10.1016/j.jog.2004.11.001.
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- Chao, N., Wang, Z., Jiang, W., and Chao, D., 2016. A quantitative approach for hydrological drought characterization in southwestern
            China using GRACE. Hydrogeology Journal, 24:893–903, doi:10.1007/s10040-015-1362-y.
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- Chao, B. F., 2016. Caveats on the equivalent water thickness and surface mascon solutions derived from the GRACE satellite-observed
            time-variable gravity. Journal of Geodesy, 90:807–813, doi:10.1007/s00190-016-0912-y.
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- Chao, B. F. and Liau, J. R., 2019. Gravity Changes Due to Large Earthquakes Detected in GRACE Satellite Data via
            Empirical Orthogonal Function Analysis. Journal of Geophysical Research (Solid Earth), 124(3):3024–3035, doi:10.1029/2018JB016862.
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- Chao, B. F. and Chung, C. H., 2019. On Estimating the Cross Correlation and Least Squares Fit of One Data Set to
            Another With Time Shift. Earth and Space Science, 6(8):1409–1415, doi:10.1029/2018EA000548.
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- Chao, B. F. and Yu, Y., 2020. Variation of the equatorial moments of inertia associated with a 6-year westward rotary
            motion in the Earth. Earth and Planetary Science Letters, 542:116316, doi:10.1016/j.epsl.2020.116316.
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- Chao, Nengfang, Jin, Taoyong, Cai, Zuansi, Chen, Gang, Liu, Xianglin, Wang, Zhengtao, and Yeh, Pat J. -F., 2021. Estimation
            of component contributions to total terrestrial water storage change in the Yangtze river basin. Journal of Hydrology,
            595:125661, doi:10.1016/j.jhydrol.2020.125661.
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- Chao, Lijun, Zhang, Ke, Wang, Jingfeng, Feng, Jin, and Zhang, Mengjie, 2021. A Comprehensive Evaluation of Five Evapotranspiration
            Datasets Based on Ground and GRACE Satellite Observations: Implications for Improvement of Evapotranspiration Retrieval Algorithm.
            Remote Sensing, 13(12):2414, doi:10.3390/rs13122414.
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- Chao, Benjamin F., 2023. Gravitational inversion for arbitrary surface mass distribution-application to earth's time-variable
            gravity with topography. Geophysical Journal International, 234(3):2459–2465, doi:10.1093/gji/ggad261.
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- Chao, Nengfang, Wan, Xuewen, Zhong, Yulong, Yin, Wenjie, Yue, Lianzhe, Li, Fupeng, Hu, Ying, Wang, Jiangyuan, Chen, Gang,
            Wang, Zhengtao, Yu, Nan, and Ouyang, Guichong, 2023. Reconstructing a new terrestrial water storage deficit index to detect
            and quantify drought in the Yangtze River Basin. Journal of Hydrology, 625:129972, doi:10.1016/j.jhydrol.2023.129972.
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- Chao, Benjamin Fong, Wu, Yun Hao, Zhang, ZiZhan, and Ogawa, Rokyo, 2011. Gravity Variation in Siberia: GRACE Observation and
            Possible Causes. Terrestrial, Atmospheric and Oceanic Sciences, 22(2):149–155, doi:10.3319/TAO.2010.07.26.03(TibXS).
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         - Chaudhari, Suyog, Pokhrel, Yadu, Moran, Emilio, and Miguez-Macho, Gonzalo, 2019. Multi-decadal hydrologic change and variability
            in the Amazon River basin: understanding terrestrial water storage variations and drought characteristics. Hydrology and
            Earth System Sciences, 23(7):2841–2862, doi:10.5194/hess-23-2841-2019.
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         - Chen, J. L., Wilson, C. R., Tapley, B. D., Famiglietti, J. S., and Rodell, M., 2005. Seasonal global mean
            sea level change from satellite altimeter, GRACE, and geophysical models. Journal of Geodesy, 79:532–539, doi:10.1007/s00190-005-0005-9.
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- Chen, J. L., Wilson, C. R., Famiglietti, J. S., and Rodell, M., 2005. Spatial sensitivity of the Gravity Recovery
            and Climate Experiment (GRACE) time-variable gravity observations. Journal of Geophysical Research (Solid Earth), 110(B9):8408–+,
            doi:10.1029/2004JB003536.
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- Chen, J. L., Rodell, M., Wilson, C. R., and Famiglietti, J. S., 2005. Low degree spherical harmonic influences
            on Gravity Recovery and Climate Experiment (GRACE) water storage estimates. Geophysical Research Letters, 32:14405–+,
            doi:10.1029/2005GL022964.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., and Ries, J. C., 2004. Low degree gravitational changes from
            GRACE: Validation and interpretation. Geophysical Research Letters, 31:22607–+, doi:10.1029/2004GL021670.
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- Chen, J. L. and Wilson, C. R., 2003. Low degree gravitational changes from earth rotation and geophysical models.
            Geophysical Research Letters, 30:6–1, doi:10.1029/2003GL018688.
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- Chen, J. L., Wilson, C. R., and Seo, K.-W., 2006. Optimized smoothing of Gravity Recovery and Climate Experiment
            (GRACE) time-variable gravity observations. Journal of Geophysical Research (Solid Earth), 111(B10):6408–+, doi:10.1029/2005JB004064.
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- Chen, J. L., Tapley, B. D., and Wilson, C. R., 2006. Alaskan mountain glacial melting observed by satellite
            gravimetry. Earth and Planetary Science Letters, 248:368–378, doi:10.1016/j.epsl.2006.05.039.
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- Chen, J. L., Wilson, C. R., Blankenship, D. D., and Tapley, B. D., 2006. Antarctic mass rates from GRACE.
            Geophysical Research Letters, 33:11502–+, doi:10.1029/2006GL026369.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2006. Satellite Gravity Measurements Confirm Accelerated Melting of Greenland
            Ice Sheet. Science, 313:1958–1960, doi:10.1126/science.1129007.
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- Chen, J. L., Wilson, C. R., Famiglietti, J. S., and Rodell, M., 2007. Attenuation effect on seasonal basin-scale
            water storage changes from GRACE time-variable gravity. Journal of Geodesy, 81:237–245, doi:10.1007/s00190-006-0104-2.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., and Grand, S., 2007. GRACE detects coseismic and postseismic deformation
            from the Sumatra-Andaman earthquake. Geophysical Research Letters, 34:13302–+, doi:10.1029/2007GL030356.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Blankenship, D. D., and Ivins, E. R., 2007. Patagonia
            Icefield melting observed by Gravity Recovery and Climate Experiment (GRACE). Geophysical Research Letters, 34:22501–+,
            doi:10.1029/2007GL031871.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Blankenship, D., and Young, D., 2008. Antarctic regional ice loss
            rates from GRACE. Earth and Planetary Science Letters, 266:140–148, doi:10.1016/j.epsl.2007.10.057.
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- Chen, J. L. and Wilson, C. R., 2008. Low degree gravity changes from GRACE, Earth rotation, geophysical models,
            and satellite laser ranging. Journal of Geophysical Research (Solid Earth), 113(B12):6402–+, doi:10.1029/2007JB005397.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Yang, Z. L., and Niu, G. Y., 2009. 2005 drought event
            in the Amazon River basin as measured by GRACE and estimated by climate models. Journal of Geophysical Research (Solid
            Earth), 114(B13):5404–+, doi:10.1029/2008JB006056.
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- Chen, J. L., Wilson, C. R., and Seo, K.-W., 2009. S_2 tide aliasing in GRACE time-variable gravity solutions. Journal
            of Geodesy, 83:679–687, doi:10.1007/s00190-008-0282-1.
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- Chen, J. L., Wilson, C. R., Blankenship, D., and Tapley, B. D., 2009. Accelerated Antarctic ice loss from satellite
            gravity measurements. Nature Geoscience, 2:859–862, doi:10.1038/ngeo694.
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- Chen, J., Bender, M., Beyerle, G., Dick, G., Falck, C., Ge, M., Gendt, G., Heise, S., Ramatschi, M., Schmidt, T., Stosius,
            R., and Wickert, J., 2010. GNSS Activities for Natural Disaster Monitoring and Climate Change Detection at GFZ – an Overview.
            In Chuvieco and Li, Yang (editors), Advances in Earth Observation of Global Change, pp. 159–172, Springer, Dordrecht,
            Heidelberg, London, New York.
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- Chen, J. and Wang, J., 2007. Reduced-Dynamic Precise Orbit Determination for Low Earth Orbiters Based on Helmert Transformation.
            Artificial Satellites, 42:155–165, doi:10.2478/v10018-0008-008-x.
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- Chen, Y., Recovery of terrestrial water storage change from low-low satellite-to-satellite tracking. Ph.D. Thesis, The Ohio
            State University, 2007.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Longuevergne, L., Yang, Z. L., and Scanlon, B. R., 2010.
            Recent La Plata basin drought conditions observed by satellite gravimetry. Journal of Geophysical Research (Atmospheres),
            115(D14):22108–+, doi:10.1029/2010JD014689.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2010. The 2009 exceptional Amazon flood and interannual terrestrial
            water storage change observed by GRACE. Water Resources Research, 46:12526–+, doi:10.1029/2010WR009383.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2011. Interannual variability of Greenland ice losses from satellite
            gravimetry. Journal of Geophysical Research (Solid Earth), 116(B15):B07406, doi:10.1029/2010JB007789.
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- Chen, J. L., Wilson, C. R., and Zhou, Y. H., 2012. Seasonal excitation of polar motion. Journal of Geodynamics,
            62:8–15, doi:10.1016/j.jog.2011.12.002.
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- Chen, J. L., Wilson, C. R., and Tapley, B. D., 2013. Contribution of ice sheet and mountain glacier melt to
            recent sea level rise. Nature Geoscience, 6:549–552, doi:10.1038/ngeo1829.
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- Chen, Y., Velicogna, I., Famiglietti, J. S., and Randerson, J. T., 2013. Satellite observations of terrestrial water
            storage provide early warning information about drought and fire season severity in the Amazon. Journal of Geophysical
            Research (Biogeosciences), 118:495–504, doi:10.1002/jgrg.20046.
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- Chen, J. L., Wilson, C. R., Ries, J. C., and Tapley, B. D., 2013. Rapid ice melting drives Earth's pole
            to the east. Geophysical Research Letters, 40:2625–2630, doi:10.1002/grl.50552.
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- Chen, H., Liu, H., and Hanada, T., 2014. Storm-time atmospheric density modeling using neural networks and its application
            in orbit propagation. Advances in Space Research, 53:558–567, doi:10.1016/j.asr.2013.11.052.
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- Chen, J., Li, J., Zhang, Z., and Ni, S., 2014. Long-term groundwater variations in Northwest India from satellite gravity
            measurements. Global and Planetary Change, 116:130–138, doi:10.1016/j.gloplacha.2014.02.007.
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- Chen, Q., Shen, Y., Zhang, X., Hsu, H., Chen, W., Ju, X., and Lou, L., 2015. Monthly gravity field models derived from GRACE
            Level 1B data using a modified short-arc approach. Journal of Geophysical Research (Solid Earth), 120:1804–1819,
            doi:10.1002/2014JB011470.
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- Chen, Q., Shen, Y., Chen, W., Zhang, X., Hsu, H., and Ju, X., 2015. A modified acceleration-based monthly gravity field solution
            from GRACE data. Geophysical Journal International, 202:1190–1206, doi:10.1093/gji/ggv220.
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- Chen, Q., Shen, Y., Zhang, X., Chen, W., and Hsu, H., 2015. Tongji-GRACE01: A GRACE-only static gravity field model recovered
            from GRACE Level-1B data using modified short arc approach. Advances in Space Research, 56:941–951, doi:10.1016/j.asr.2015.05.034.
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- Chen, J. L., Wilson, C. R., Li, J., and Zhang, Z., 2015. Reducing leakage error in GRACE-observed long-term ice
            mass change: a case study in West Antarctica. Journal of Geodesy, 89:925–940, doi:10.1007/s00190-015-0824-2.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Scanlon, B., and Güntner, A., 2016. Long-term groundwater storage
            change in Victoria, Australia from satellite gravity and in situ observations. Global and Planetary Change, 139:56–65,
            doi:10.1016/j.gloplacha.2016.01.002.
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- Chen, J., Famigliett, J. S., Scanlon, B. R., and Rodell, M., 2016. Groundwater Storage Changes: Present Status from
            GRACE Observations. Surveys in Geophysics, 37:397–417, doi:10.1007/s10712-015-9332-4.
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- Chen, J. L., Wilson, C. R., and Ries, J. C., 2016. Broadband assessment of degree-2 gravitational changes from
            GRACE and other estimates, 2002-2015. Journal of Geophysical Research (Solid Earth), 121:2112–2128, doi:10.1002/2015JB012708.
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- Chen, Q., Shen, Y., Chen, W., Zhang, X., and Hsu, H., 2016. An improved GRACE monthly gravity field solution by modeling the
            non-conservative acceleration and attitude observation errors. Journal of Geodesy, 90:503–523, doi:10.1007/s00190-016-0889-6.
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- Chen, Q., 2015. Analyzing and modeling environmental loading induced displacements with GPS and GRACE, Deutsche Geod.
            Kommission, Reihe C 752, pp. 131, Bayer. Akademie der Wissenschaften, Munich.
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- Chen, X., Long, D., Hong, Y., Zeng, C., and Yan, D., 2017. Improved modeling of snow and glacier melting by a progressive
            two-stage calibration strategy with GRACE and multisource data: How snow and glacier meltwater contributes to the runoff of
            the Upper Brahmaputra River basin?. Water Resources Research, 53:2431–2466, doi:10.1002/2016WR019656.
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- Chen, J. L., Wilson, C. R., Tapley, B. D., Save, H., and Cretaux, J.-F., 2017. Long-term and seasonal Caspian
            Sea level change from satellite gravity and altimeter measurements. Journal of Geophysical Research (Solid Earth),
            122:2274–2290, doi:10.1002/2016JB013595.
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- Chen, W., Braitenberg, C., and Serpelloni, E., 2018. Interference of tectonic signals in subsurface hydrologic monitoring
            through gravity and GPS due to mountain building. Global and Planetary Change, 167:148–159, doi:10.1016/j.gloplacha.2018.05.003.
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- Chen, X., Jiang, J., and Li, H., 2018. Drought and Flood Monitoring of the Liao River Basin in Northeast China Using Extended
            GRACE Data. Remote Sensing, 10:1168, doi:10.3390/rs10081168.
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- Chen, Q., Shen, Y., Francis, O., Chen, W., Zhang, X., and Hsu, H., 2018. Tongji-Grace02s and Tongji-Grace02k: High-Precision
            Static GRACE-Only Global Earth's Gravity Field Models Derived by Refined Data Processing Strategies. Journal of Geophysical
            Research (Solid Earth), 123:6111–6137, doi:10.1029/2018JB015641.
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- Chen, Q., Poropat, L., Zhang, L., Dobslaw, H., Weigelt, M., and van Dam, T., 2018. Validation of the EGSIEM GRACE Gravity
            Fields Using GNSS Coordinate Timeseries and In-Situ Ocean Bottom Pressure Records. Remote Sensing, 10:1976, doi:10.3390/rs10121976.
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- Chen, J., Tapley, B., Save, H., Tamisiea, M. E., Bettadpur, S., and Ries, J., 2018. Quantification of Ocean Mass Change
            Using Gravity Recovery and Climate Experiment, Satellite Altimeter, and Argo Floats Observations. Journal of Geophysical
            Research (Solid Earth), 123(B12):10, doi:10.1029/2018JB016095.
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- Chen, Hao, Zhang, Wanchang, Nie, Ning, and Guo, Yuedong, 2019. Long-term groundwater storage variations estimated in the Songhua
            River Basin by using GRACE products, land surface models, and in-situ observations. Science of the Total Environment,
            649:372–387, doi:10.1016/j.scitotenv.2018.08.352.
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- Chen, Qiujie, Shen, Yunzhong, Chen, Wu, Francis, Olivier, Zhang, Xingfu, Chen, Qiang, Li, Weiwei, and Chen, Tianyi, 2019.
            An Optimized Short-Arc Approach: Methodology and Application to Develop Refined Time Series of Tongji-Grace2018 GRACE Monthly
            Solutions. Journal of Geophysical Research (Solid Earth), 124(6):6010–6038, doi:10.1029/2018JB016596.
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- Chen, Zheng, Jiang, Weiguo, Wu, Jianjun, Chen, Kun, Deng, Yue, Jia, Kai, and Mo, Xinyu, 2017. Detection of the spatial patterns
            of water storage variation over China in recent 70 years. Scientific Reports, 7:6423, doi:10.1038/s41598-017-06558-5.
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- Chen, He, Liu, Li, and Jing, 2019. Downscaling of GRACE-Derived Groundwater Storage Based on the Random Forest Model. Remote
            Sensing, 11(24):2979, doi:10.3390/rs11242979.
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- Chen, Jianli, Tapley, Byron, Seo, Ki-Weon, Wilson, Clark, and Ries, John, 2019. Improved Quantification of Global Mean Ocean
            Mass Change Using GRACE Satellite Gravimetry Measurements. Geophysical Research Letters, 46(23):13,984–13,991,
            doi:10.1029/2019GL085519.
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- Chen, Xuhui, Jiang, Jinbao, Lei, Tianjie, and Yue, Chong, 2020. GRACE satellite monitoring and driving factors analysis of
            groundwater storage under high-intensity coal mining conditions: a case study of Ordos, northern Shaanxi and Shanxi, China.
            Hydrogeology Journal, 28(2):673–686, doi:10.1007/s10040-019-02101-0.
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- Chen, Jianli, Tapley, Byron, Wilson, Clark, Cazenave, Anny, Seo, Ki-Weon, and Kim, Jae-Seung, 2020. Global Ocean Mass Change
            From GRACE and GRACE Follow-On and Altimeter and Argo Measurements. Geophysical Research Letters, 47(22):e90656, doi:10.1029/2020GL090656.
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- Chen, Jianli, Tapley, Byron, Rodell, Matt, Seo, Ki-Weon, Wilson, Clark, Scanlon, Bridget R., and Pokhrel, Yadu, 2020. Basin-Scale
            River Runoff Estimation From GRACE Gravity Satellites, Climate Models, and In Situ Observations: A Case Study in the Amazon
            Basin. Water Resources Research, 56(10):e28032, doi:10.1029/2020WR028032.
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- Chen, Ajiao, Guan, Huade, Batelaan, Okke, Zhang, Xinping, and He, Xinguang, 2019. Global Soil Moisture-Air Temperature Coupling
            Based on GRACE-Derived Terrestrial Water Storage. Journal of Geophysical Research (Atmospheres), 124(14):7786–7796,
            doi:10.1029/2019JD030324.
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- Chen, Tianyi, Kusche, Jürgen, Shen, Yunzhong, and Chen, Qiujie, 2020. A Combined Use of TSVD and Tikhonov Regularization
            for Mass Flux Solution in Tibetan Plateau. Remote Sensing, 12(12):2045, doi:10.3390/rs12122045.
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- Chen, Qiujie, Shen, Yunzhong, Kusche, Jürgen, Chen, Wu, Chen, Tianyi, and Zhang, Xingfu, 2021. High-Resolution GRACE
            Monthly Spherical Harmonic Solutions. Journal of Geophysical Research (Solid Earth), 126(1):e18892, doi:10.1029/2019JB018892.
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- Chen, Jianli, Ries, John C., and Tapley, Byron D., 2021. Assessment of degree-2 order-1 gravitational changes from GRACE and
            GRACE Follow-on, Earth rotation, satellite laser ranging, and models. Journal of Geodesy, 95(4):38, doi:10.1007/s00190-021-01492-x.
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- Chen, Jianli, Tapley, Byron, Tamisiea, Mark E., Save, Himanshu, Wilson, Clark, Bettadpur, Srinivas, and Seo, Ki-Weon, 2021.
            Error Assessment of GRACE and GRACE Follow-On Mass Change. Journal of Geophysical Research (Solid Earth), 126(9):e22124,
            doi:10.1029/2021JB022124.
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- Chen, Weijing, Huang, Chunlin, and Yang, Zong-Liang, 2021. More severe drought detected by the assimilation of brightness
            temperature and terrestrial water storage anomalies in Texas during 2010-2013. Journal of Hydrology, 603:126802, doi:10.1016/j.jhydrol.2021.126802.
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- Chen, Zhiwei, Zheng, Wei, Yin, Wenjie, Li, Xiaoping, Zhang, Gangqiang, and Zhang, Jing, 2021. Improving the Spatial Resolution
            of GRACE-Derived Terrestrial Water Storage Changes in Small Areas Using the Machine Learning Spatial Downscaling Method. Remote
            Sensing, 13(23):4760, doi:10.3390/rs13234760.
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- Chen, Jianli, Cazenave, Anny, Dahle, Christoph, Llovel, William, Panet, Isabelle, Pfeffer, Julia, and Moreira, Lorena, 2022.
            Applications and Challenges of GRACE and GRACE Follow-On Satellite Gravimetry. Surveys in Geophysics, 43(1):305–345,
            doi:10.1007/s10712-021-09685-x.
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- Chen, Ajiao, Guan, Huade, and Batelaan, Okke, 2022. Non-linear interactions between vegetation and terrestrial water storage
            in Australia. Journal of Hydrology, 613:128336, doi:10.1016/j.jhydrol.2022.128336.
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- Chen, Ajiao, Guan, Huade, and Batelaan, Okke, 2021. Seesaw Terrestrial Wetting and Drying Between Eastern and Western Australia.
            Earth's Future, 9(5):e2020EF001893, doi:10.1029/2020EF001893.
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- Chen, Ajiao, Guan, Huade, and Batelaan, Okke, 2022. Spatially differentiated effects of local moisture deficit and increased
            global temperature on hot extreme occurrences. Journal of Hydrology, 615:128720, doi:10.1016/j.jhydrol.2022.128720.
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- Chen, Qiujie, Wang, Fengwei, Shen, Yunzhong, Zhang, Xingfu, Nie, Yufeng, and Chen, Jianhua, 2022. Monthly Gravity Field Solutions
            From Early LEO Satellites' Observations Contribute to Global Ocean Mass Change Estimates Over 1993\ensuremath\sim2004. Geophysical
            Research Letters, 49(21):e2022GL099917, doi:10.1029/2022GL099917.
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- Chen, Lei, Yang, Jiayan, and Wu, Lixin, 2023. Topography Effects on the Seasonal Variability of Ocean Bottom Pressure in the
            North Pacific Ocean. Journal of Physical Oceanography, 53(3):929–941, doi:10.1175/JPO-D-22-0140.1.
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- Chen, Zhiwei, Zheng, Wei, Yin, Wenjie, Li, Xiaoping, and Ma, Meihong, 2023. Improving Spatial Resolution of GRACE-Derived
            Water Storage Changes Based on Geographically Weighted Regression Downscaled Model. IEEE Journal of Selected Topics in
            Applied Earth Observations and Remote Sensing, 16:4261–4275, doi:10.1109/JSTARS.2023.3272916.
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- Chen, Wei, Xiong, Yuhao, Zhong, Min, Yang, Zihan, Shum, C. K., Li, Wenhao, Liang, Lei, and Li, Quanguo, 2023. Twenty-Year
            Spatiotemporal Variations of TWS over Mainland China Observed by GRACE and GRACE Follow-On Satellites. Atmosphere,
            14(12):1717, doi:10.3390/atmos14121717.
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- Chen, Wei, Forootan, Ehsan, Shum, C. K., Zhong, Min, Feng, Wei, Xiong, Yuhao, and Li, Wenhao, 2024. A novel dynamic scale
            factor designed for recovering global TWS changes. Journal of Hydrology, 637:131364, doi:10.1016/j.jhydrol.2024.131364.
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- Chen, Ajiao, Xiong, Jinghua, Wu, Shixue, and Yang, Yuting, 2024. Changes in terrestrial water storage in the Three-North region
            of China over 2003–2021: Assessing the roles of climate and vegetation restoration. Journal of Hydrology, 637:131303,
            doi:10.1016/j.jhydrol.2024.131303.
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- Chen, Tao, Pan, Yuanjin, Ding, Hao, Jiao, Jiashuang, and He, Meilin, 2024. Investigating terrestrial water storage variation
            and its response to climate in southeastern Tibetan Plateau inferred through space geodetic observations. Journal of Hydrology,
            640:131742, doi:10.1016/j.jhydrol.2024.131742.
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- Chen, Xuxing, Hu, Xiong, Xiao, Cunying, and Wang, Xijing, 2013. Comparison of the Thermospheric Densities Between GRACE/CHAMP
            Satellites Data and NRLMSISE-00 Model. Chinese Journal of Space Science, 33(5):509, doi:10.11728/cjss2013.05.509.
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- Chen, Jianli, Famiglietti, James S., Scanlon, Bridget R., and Rodell, Matthew, 2016. Erratum to: Groundwater Storage Changes:
            Present Status from GRACE Observations. Surveys in Geophysics, 37(3):701–701, doi:10.1007/s10712-016-9370-6.
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- Chen, Tianyi, Shen, Yunzhong, and Chen, Qiujie, 2016. Mass Flux Solution in the Tibetan Plateau Using Mascon Modeling. Remote
            Sensing, 8(5):439, doi:10.3390/rs8050439.
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- Chen, Zhiwei, Zhang, Xingfu, and Chen, Jianhua, 2021. Monitoring Terrestrial Water Storage Changes with the Tongji-Grace2018
            Model in the Nine Major River Basins of the Chinese Mainland. Remote Sensing, 13(9):1851, doi:10.3390/rs13091851.
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- Chen, Yu, Ahmed, Mohamed, Tangdamrongsub, Natthachet, and Murgulet, Dorina, 2021. Reservoir-Induced Land Deformation: Case
            Study from the Grand Ethiopian Renaissance Dam. Remote Sensing, 13(5):874, doi:10.3390/rs13050874.
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- Chen, Xiang, Tang, Chengpan, Dai, Wujiao, Hu, Xiaogong, Chen, Liucheng, Zhang, Zhongying, Zhu, Xinhui, and Li, Mingzhe, 2025.
            Modelling and prediction of atmospheric drag coefficients in LEO satellite orbit determination and prediction with Bi-LSTM
            approach. Advances in Space Research, 75(3):2874–2888, doi:10.1016/j.asr.2024.10.063.
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- Chen, Junxu, Wang, Yuan, Zhao, Zhifang, Fan, Yunjiang, Luo, Xiaochuan, Yi, Lu, Feng, Siqi, and Yang, Liang Emlyn, 2025. Natural
            and human-induced decline and spatio-temporal differentiation of terrestrial water storage over the Lancang-Mekong River Basin.
            Journal of Geographical Sciences, 35(1):112–138, doi:10.1007/s11442-025-2315-6.
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- Chen, Qiujie, Shen, Zhanglin, Nie, Yufeng, Shen, Yunzhong, and Zhang, Xingfu, 2025. Contribution analysis of the addition
            of laser ranging interferometry on GRACE-FO gravity field estimation under different accelerometer calibration schemes. Advances
            in Space Research, 75(2):1913–1930, doi:10.1016/j.asr.2024.10.038.
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- Chen, Jun, Wang, Linsong, Chen, Chao, and Peng, Zhenran, 2025. Downscaling and Gap-Filling GRACE-Based Terrestrial Water Storage
            Anomalies in the Qinghai–Tibet Plateau Using Deep Learning and Multi-Source Data. Remote Sensing, 17(8):1333,
            doi:10.3390/rs17081333.
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- Chen, Zexia, Liu, Wei, Feng, Qi, Yin, Zhenliang, Zhu, Meng, Xue, Yuanyuan, Wang, Lingge, Fang, Chunshuang, and Zhu, Rui, 2025.
            Groundwater anomaly variation and its response to environment change in an inland river basin, China. Journal of Hydrology,
            661:133812, doi:10.1016/j.jhydrol.2025.133812.
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- Chen, Tao, Pan, Yuanjin, Jiao, Jiashuang, and He, Meilin, 2025. Integrating GNSS and GRACE Observations to Investigate Water
            Storage Variations Across Different Climatic Regions of China. IEEE Transactions on Geoscience and Remote Sensing,
            63:TGRS.2025, doi:10.1109/TGRS.2025.3563095.
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         - Cheng, M. and Tapley, B. D., 2004. Variations in the Earth's oblateness during the past 28 years. Journal of Geophysical
            Research (Solid Earth), 109(B18):9402–+, doi:10.1029/2004JB003028.
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- Cheng, M. and Tapley, B. D., 1999. Seasonal variations in low degree zonal harmonics of the Earth's gravity field from
            satellite laser ranging observations. Journal of Geophysical Research (Solid Earth), 104:2667–2682, doi:10.1029/1998JB900036.
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- Cheng, M. K., 2002. Gravitational perturbation theory for intersatellite tracking. Journal of Geodesy, 76:169–185,
            doi:10.1007/s00190-001-0233-6.
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- Cheng, L. Y. and Xsu, H. Z., 2006. The rotation of the gravity potential on the Earth's gravity field recovery.
            Chinese Journal of Geophysics - Chinese Edition, 49:93–98.
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- Cheng, M., Ries, J. C., and Tapley, B. D., 2011. Variations of the Earth's figure axis from satellite laser ranging
            and GRACE. Journal of Geophysical Research (Solid Earth), 116(B15):1409–+, doi:10.1029/2010JB000850.
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- Cheng, X., Li, L., Du, Y., Wang, J., and Huang, R.-X., 2013. Mass-induced sea level change in the northwestern North Pacific
            and its contribution to total sea level change. Geophysical Research Letters, 40:3975–3980, doi:10.1002/grl.50748.
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- Cheng, M. and Ries, J., 2017. The unexpected signal in GRACE estimates of C_$\$20$\$. Journal of Geodesy, 91:897–914,
            doi:10.1007/s00190-016-0995-5.
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- Cheng, Xuhua, Ou, Niansen, Chen, Jiajia, and Huang, Rui Xin, 2021. On the seasonal variations of ocean bottom pressure in
            the world oceans. Geoscience Letters, 8(1):29, doi:10.1186/s40562-021-00199-3.
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- Cheng, Minkang and Ries, John, 2023. C$_20$ and C$_30$ Variations From SLR for GRACE/GRACE-FO Science Applications. Journal
            of Geophysical Research (Solid Earth), 128(2):e2022JB025459, doi:10.1029/2022JB025459.
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- Cheng, Minkang, 2024. Decadal Variations in Equatorial Ellipticity and Principal Axis of the Earth from Satellite Laser Ranging/GRACE.
            Surveys in Geophysics, 45(5):1601–1626, doi:10.1007/s10712-024-09852-w.
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- Cheng, Xuhua and Qi, Yiquan, 2010. On steric and mass-induced contributions to the annual sea-level variations in the South
            China Sea. Global and Planetary Change, 72(3):227–233, doi:10.1016/j.gloplacha.2010.05.002.
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- Cheng, Minkang and Tapley, Byron D., 2005. Correction to “Variations in the Earth's oblateness during the past 28 years”.
            Journal of Geophysical Research: Solid Earth, 110(B3), doi:10.1029/2005jb003700.
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         - Cherniak, I. and Zakharenkova, I., 2016. High-latitude ionospheric irregularities: differences between ground- and space-based
            GPS measurements during the 2015 St. Patrick's Day storm. Earth, Planets, and Space, 68:136, doi:10.1186/s40623-016-0506-1.
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         - Chew, C. C. and Small, E. E., 2014. Terrestrial water storage response to the 2012 drought estimated from GPS vertical
            position anomalies. Geophysical Research Letters, 41:6145–6151, doi:10.1002/2014GL061206.
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         - Chi, Haewon, Seo, Hocheol, and Kim, Yeonjoo, 2024. Hydrological trends captured by assimilating GRACE total water storage
            data into the CLM5-BGC model. Journal of Hydrology, 629:130527, doi:10.1016/j.jhydrol.2023.130527.
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         - Choi, Sungchan, Oh, Chang-Whan, and Luehr, Herrmann, 2006. Tectonic relation between northeastern China and the Korean peninsula
            revealed by interpretation of GRACE satellite gravity data. Gondwana Research, 9(1-2):62–67, doi:10.1016/j.gr.2005.06.002.
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- Choi, Jong-Yeoun and Lee, Sang-Jeong, 2011. The Precision Validation of the Precise Baseline Determination for Satellite Formation.
            Journal of Astronomy and Space Sciences, 28(1):63–70, doi:10.5140/JASS.2011.28.1.063.
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- Choi, Jong-Yeoun and Lee, Sang-Jeong, 2011. Precision Assessment of Near Real Time Precise Orbit Determination for Low Earth
            Orbiter. Journal of Astronomy and Space Sciences, 28(1):55–62, doi:10.5140/JASS.2011.28.1.055.
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            ultra-sensitive electrostatic accelerometers for GRACE Follow-on and towards the next generation gravity missions. Acta
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            interpretations and noise analysis from GRACE and geophysical models. Remote Sensing, 12(15):2477, doi:10.3390/rs12152477.
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            index derived from GRACE and GRACE-FO data. Journal of Hydrology, 603:127170, doi:10.1016/j.jhydrol.2021.127170.
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            Reconstruction Products at an Interannual Scale During 1981-2019. Water Resources Research, 59(3):e2022WR034381, doi:10.1029/2022WR034381.
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            by Water Abstractions: Comparing the Output of a Global Hydrological Model with GRACE and GPS Observations. Surveys in
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            of Ice Mass Loss in the Gulf of Alaska From Constrained Forward Modeling of GRACE Data. Frontiers in Earth Science,
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            potential contamination of GRACE observed mass change. Geophysical Journal International, 191:83–87, doi:10.1111/j.1365-246X.2012.05640.x.
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            Stocks in Xinjiang Based on GRACE Data. Remote Sensing, 16(5):813, doi:10.3390/rs16050813.
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            monitoring and management in Africa: A comprehensive review. Journal of Hydrology, 623:129738, doi:10.1016/j.jhydrol.2023.129738.
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         - Dumberry, M., 2010. Gravity variations induced by core flows. Geophysical Journal International, 180:635–650,
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         - Dutt Vishwakarma, B., Devaraju, B., and Sneeuw, N., 2016. Minimizing the effects of filtering on catchment scale GRACE solutions.
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         - Duvvuri, Bhavya and Beighley, Edward, 2023. Estimating Monthly River Discharges from GRACE/GRACE-FO Terrestrial Water Storage
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            sensing and land surface models. Scientific Reports, 14(1):25653, doi:10.1038/s41598-024-75361-w.
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            as detected by the GRACE satellites: a reexamination. Geophysical Journal International, 183:733–747, doi:10.1111/j.1365-246X.2010.04756.x.
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            Variations of the Earth's Gravitational Potential Observed by GRACE. Journal of Geodesy, 81:5–15, doi:10.1007/s00190-006-0040-1.
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         - Fenoglio-Marc, L., Kusche, J., and Becker, M., 2006. Mass variation in the Mediterranean Sea from GRACE and its validation
            by altimetry, steric and hydrologic fields. Geophysical Research Letters, 33:19606–+, doi:10.1029/2006GL026851.
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            and Black Seas. Journal of Geodynamics, 59:168–182, doi:10.1016/j.jog.2012.04.001.
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- Fenoglio-Marc, L., 2015. Satellite geodesy for sea level and climate change, Deutsche Geod. Kommission, Reihe C 746,
            pp. 278, Bayer. Akademie der Wissenschaften, Munich.
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            and Schuh, Harald, 2020. Drift of the Earth's Principal Axes of Inertia from GRACE and Satellite Laser Ranging Data. Remote
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            geodetic sensors and surface-loading models. Earth, Planets, and Space, 71(1):84, doi:10.1186/s40623-019-1062-2.
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            point-mass solution—A case study in Antarctica. Remote Sensing, 12(19):3197, doi:10.3390/rs12193197.
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            in the Yangtze River Basin Using Satellite-Based Observations. Remote Sensing, 5(7):3415–3430, doi:10.3390/rs5073415.
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            Abubakar S., 2019. Prospects for Imaging Terrestrial Water Storage in South America Using Daily GPS Observations. Remote
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- Fersch, B., Kunstmann, H., Bárdossy, A., Devaraju, B., and Sneeuw, N., 2012. Continental-Scale Basin Water Storage
            Variation from Global and Dynamically Downscaled Atmospheric Water Budgets in Comparison with GRACE-Derived Observations.
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            2020. GrSMBMIP: intercomparison of the modelled 1980-2012 surface mass balance over the Greenland Ice Sheet. The Cryosphere,
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         - Fischer, D. and Michel, V., 2013. Inverting GRACE gravity data for local climate effects. Journal of Geodetic Science,
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            as Dominant Features of Upper Thermospheric Density. Geophysical Research Letters, 52(11):e2025GL115612, doi:10.1029/2025GL115612.
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            F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via
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            unserer Zeit, 52(4):168–175, doi:10.1002/piuz.202101612.
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            J., Dligatch, S., Farrant, D. I., Green, K. L., Seckold, J. A., Blundell, M., Brister, R., Smith, C., Sheard,
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            mass changes in the Greenland Ice Sheet. Geophysical Research Letters, 31:6617–+, doi:10.1029/2004GL019469.
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         - Flury, J. and Rummel, R. (editors), 2006. Future Satellite Gravimetry and Earth Dynamics, ISBN 0-387-29796-0, pp. 166,
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         - Fok, Hok Sum and Liu, Yongxin, 2019. An Improved GPS-Inferred Seasonal Terrestrial Water Storage Using Terrain-Corrected Vertical
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            China Sea using satellite gravimetry. Global and Planetary Change, 207:103686, doi:10.1016/j.gloplacha.2021.103686.
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         - Foldvary, L. and Fukuda, Y., 2001. IB and NIB hypotheses and their possible discrimination by GRACE. Geophysical Research
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         - Forbes, J. M., Zhang, X., Bruinsma, S., and Oberheide, J., 2011. Sun-synchronous thermal tides in exosphere temperature
            from CHAMP and GRACE accelerometer measurements. Journal of Geophysical Research (Space Physics), 116(A15):11309, doi:10.1029/2011JA016855.
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- Forbes, J. M. and Zhang, X., 2012. Lunar tide amplification during the January 2009 stratosphere warming event: Observations
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            tides. Geophysical Research Letters, 36(15):L15812, doi:10.1029/2009GL038748.
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            solar minimum conditions. Journal of Geophysical Research (Space Physics), 118(4):1788–1801, doi:10.1029/2012JA017962.
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            tides. Journal of Geophysical Research (Space Physics), 117(A11):A11306, doi:10.1029/2012JA018087.
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            the upper thermosphere. Earth, Planets and Space, 66(1):122, doi:10.1186/1880-5981-66-122.
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            the analysis of satellite gravimetry observations. Journal of Geophysical Research (Solid Earth), 118:2382–2396,
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            from ECMWF reanalysis and operational fields, over 2003–2011. Journal of Geodesy, 88:503–514, doi:10.1007/s00190-014-0696-x.
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            Independent Component Analysis (CICA) Technique to Extract Non-stationary Patterns from Geophysical Time Series. Surveys
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               | Garc\'ıa-Garc\'ıa
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            Horwath, Martin, 2023. The Impact of New Accelerometer Transplant Data (ACH) on GRACE Follow-On Along-Orbit Inter-Satellite
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            water storage changes with models using wavelet multiresolution analysis. Journal of Hydrology, 626:130217, doi:10.1016/j.jhydrol.2023.130217.
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            Orbit Determination Solutions. Remote Sensing, 13(20):4119, doi:10.3390/rs13204119.
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            Changes and Major Driving Factors Analysis in Inner Mongolia, China. Sensors, 22(24):9665, doi:10.3390/s22249665.
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- Guo, Xiang, Lian, Yidu, Sun, Yu, Zhou, Hao, and Luo, Zhicai, 2024. Assessment of the Added Value of the GOCE GPS Data on the
            GRACE Monthly Gravity Field Solutions. Remote Sensing, 16(9):1586, doi:10.3390/rs16091586.
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- Guo, Jinyun, Shi, Tong, Jin, Xin, Liu, Xin, Zhao, Bin, and Qiao, Xuejun, 2024. Geodetic Analysis of Orthometric Height Variations
            in Mainland China Using GRACE, Hydrological Models, and GPS Data. IEEE Transactions on Geoscience and Remote Sensing,
            62:3386879, doi:10.1109/TGRS.2024.3386879.
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- Guo, Yu, Zhang, Xiaohong, Guo, Fei, and Yang, Yan, 2024. Performance analysis of NRLMSIS 2.1 thermospheric mass density model
            using GRACE-A and SWARM-C observations. Advances in Space Research, 74(5):2475–2491, doi:10.1016/j.asr.2024.05.063.
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- Guo, Hai, Zhan, Chesheng, Zhang, Haoyue, Hu, Shi, and Li, Zhonghe, 2024. Development of anthropogenic water regulation for
            Community integrated Earth System model (CIESM). Journal of Hydrology, 635:131192, doi:10.1016/j.jhydrol.2024.131192.
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- Guo, J. Y., Greiner-Mai, H., and Ballani, L., 2005. A spectral search for the inner core wobble in Earth's polar motion.
            Journal of Geophysical Research (Solid Earth), 110(B10):B10402, doi:10.1029/2004JB003377.
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- Guo, J. Y., Huang, Z. W., Shum, C. K., and van der Wal, W., 2012. Comparisons among contemporary glacial isostatic
            adjustment models. Journal of Geodynamics, 61:129–137, doi:10.1016/j.jog.2012.03.011.
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- Guo, Jiming, Zhou, Lv, Yao, Chaolong, and Hu, Jiyuan, 2016. Surface Subsidence Analysis by Multi-Temporal InSAR and GRACE:
            A Case Study in Beijing. Sensors, 16(9):1495, doi:10.3390/s16091495.
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- Guo, Shiwei, Fan, Lei, Li, Zongnan, Fang, Xinqi, Huo, Chenshu, and Shi, Chuang, 2025. Determining geocenter motion using combined
            ground and spaceborne GPS observations with ambiguity resolution. Advances in Space Research, 75(11):7903–7916,
            doi:10.1016/j.asr.2025.03.038.
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- Guo, Yu, Guo, Fei, Zhang, Xiaohong, Yang, Yan, Mei, Dengkui, and Ren, Xiaodong, 2025. A Two-Step Method for Enhancing Thermospheric
            Mass Density Empirical Model. Space Weather, 23(5):e2024SW004317, doi:10.1029/2024SW004317.
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         - Gupta, Diksha and Dhanya, C. T., 2020. The potential of GRACE in assessing the flood potential of Peninsular Indian River
            basins. International Journal of Remote Sensing, 41(23):9009–9038, doi:10.1080/01431161.2020.1797218.
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- Gupta, Naveen and Sivananthan, S., 2025. Convergence analysis of regularised Nyström method for functional linear regression.
            Inverse Problems, 41(4):045005, doi:10.1088/1361-6420/adbfb6.
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         - Gurria, E. and López, C., 2013. Extracting the time variable gravity field from satellite gravity data using a sawtooth
            filter. Solid Earth Discussions, 5(2):1871–1899, doi:10.5194/sed-5-1871-2013.
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         - Gurzadyan, V. G., Ciufolini, I., Paolozzi, A., Kashin, A. L., Khachatryan, H. G., Mirzoyan, S., and Sindoni,
            G., 2017. Satellites testing general relativity: Residuals versus perturbations. International Journal of Modern Physics
            D, 26:1741020, doi:10.1142/S0218271817410206.
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         - Gyawali, Bimal, Ahmed, Mohamed, Murgulet, Dorina, and Wiese, David N., 2022. Filling Temporal Gaps within and between GRACE
            and GRACE-FO Terrestrial Water Storage Records: An Innovative Approach. Remote Sensing, 14(7):1565, doi:10.3390/rs14071565.
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- Gyawali, Bimal, Murgulet, Dorina, and Ahmed, Mohamed, 2022. Quantifying Changes in Groundwater Storage and Response to Hydroclimatic
            Extremes in a Coastal Aquifer Using Remote Sensing and Ground-Based Measurements: The Texas Gulf Coast Aquifer. Remote
            Sensing, 14(3):612, doi:10.3390/rs14030612.
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         - H&lstrokadczuk, N. A., van den IJssel, J., Kodikara, T., Siemes, C., and Visser, P., 2024. GRACE-FO radiation pressure
            modelling for accurate density and crosswind retrieval. Advances in Space Research, 73(5):2355–2373, doi:10.1016/j.asr.2023.12.059.
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         - Haagmans, Roger, Siemes, Christian, Massotti, Luca, Carraz, Olivier, and Silvestrin, Pierluigi, 2020. ESA's next-generation
            gravity mission concepts. Rendiconti Lincei. Scienze Fisiche e Naturali, 31:15–25, doi:10.1007/s12210-020-00875-0.
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         - Habarulema, J. B., Katamzi, Z. T., and Yizengaw, E., 2014. A simultaneous study of ionospheric parameters derived
            from FORMOSAT-3/COSMIC, GRACE, and CHAMP missions over middle, low, and equatorial latitudes: Comparison with ionosonde data.
            Journal of Geophysical Research (Space Physics), 119:7732–7744, doi:10.1002/2014JA020192.
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         - Haberkorn, Christoph, Bloßfeld, Mathis, Bouman, Johannes, Fuchs, Martin, and Schmidt, Michael, 2016. Towards a Consistent
            Estimation of the Earth's Gravity Field by Combining Normal Equation Matrices from GRACE and SLR. In Rizos, Chris and Willis,
            Pascal (editors), IAG 150 Years, pp. 375–381, Springer International Publishing, Cham.
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         - Habibi, Hamid and Raoofian-Naeeni, Mehdi, 2020. Focal mechanism of the great 2004 Sumatra earthquake by joint inversion of
            GPS deformation field and GRACE gravity change. Journal of Geodynamics, 140:101783, doi:10.1016/j.jog.2020.101783.
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         - Hachborn, E., Berg, A., Levison, J., and Ambadan, J. T., 2017. Sensitivity of GRACE-derived estimates of groundwater-level
            changes in southern Ontario, Canada. Hydrogeology Journal, 25:2391–2402, doi:10.1007/s10040-017-1612-2.
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         - Hacker, Charlotte and Kusche, Jürgen, 2024. How realistic are multi-decadal reconstructions of GRACE-like total water
            storage anomalies?. Journal of Hydrology, 645:132180, doi:10.1016/j.jhydrol.2024.13218010.22541/essoar.168565379.97983345/v1.
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         - Hadavi, Delara, Mousavi, Seyed Morteza, and Rahimzadegan, Majid, 2024. An intercomparison of the groundwater level estimations
            by GRACE and GRACE-FO satellites and groundwater modeling in Iran. Acta Geophysica, 72(5):3609–3629, doi:10.1007/s11600-024-01308-4.
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         - Haines, K., Johannessen, J. A., Knudsen, P., Lea, D., Rio, M.-H., Bertino, L., Davidson, F., and Hernandez, F., 2011.
            An ocean modelling and assimilation guide to using GOCE geoid products. Ocean Science, 7:151–164, doi:10.5194/os-7-151-2011.
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- Haines, Bruce J., Bar-Sever, Yoaz E., Bertiger, Willy I., Desai, Shailen D., Harvey, Nate, Sibois, Aurore E., and Weiss, Jan
            P., 2015. Realizing a terrestrial reference frame using the Global Positioning System. Journal of Geophysical Research
            (Solid Earth), 120(8):5911–5939, doi:10.1002/2015JB012225.
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- Haines, B., Bertiger, W., Desai, S., Ellmer, M., Heflin, M., Kuang, D., Lanyi, G., Naudet, C., Peidou, A., Ries, P., Sibois,
            A., and Wu, X., 2024. A Global Combination of Geodetic Techniques at the Observation Level: New Perspectives on the Terrestrial
            Reference Frame. Journal of Geophysical Research (Solid Earth), 129(12):2024JB029527, doi:10.1029/2024JB029527.
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         - Hakim, Wahyu Luqmanul, Fadhillah, Muhammad Fulki, Lee, Kwang-Jae, Lee, Seung-Jae, Chae, Sung-Ho, and Lee, Chang-Wook, 2023.
            Land Subsidence and Groundwater Storage Assessment Using ICOPS, GRACE, and Susceptibility Mapping in Pekalongan, Indonesia.
            IEEE Transactions on Geoscience and Remote Sensing, 61:3324043, doi:10.1109/TGRS.2023.3324043.
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         - Halipu, Ayihumaier, Wang, Xuechen, Iwasaki, Erina, Yang, Wei, and Kondoh, Akihiko, 2022. Quantifying Water Consumption through
            the Satellite Estimation of Land Use/Land Cover and Groundwater Storage Changes in a Hyper-Arid Region of Egypt. Remote
            Sensing, 14(11):2608, doi:10.3390/rs14112608.
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         - Hall, Dorothy K., Williams, Richard S., Luthcke, Scott B., and Digirolamo, Nicolo E., 2008. Greenland ice sheet surface temperature,
            melt and mass loss: 2000-06. Journal of Glaciology, 54(184):81–93, doi:10.3189/002214308784409170.
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- Hall, Dorothy K., Loomis, Bryant D., DiGirolamo, Nicolo E., and Forman, Barton A., 2024. Snowfall Replenishes Groundwater
            Loss in the Great Basin of the Western United States, but Cannot Compensate for Increasing Aridification. Geophysical Research
            Letters, 51(6):e2023GL107913, doi:10.1029/2023GL107913.
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- Hall, Amanda C., Schumann, Guy J. -P., Bamber, Jonathan L., and Bates, Paul D., 2011. Tracking water level changes of the
            Amazon Basin with space-borne remote sensing and integration with large scale hydrodynamic modelling: A review. Physics
            and Chemistry of the Earth, 36(7-8):223–231, doi:10.1016/j.pce.2010.12.010.
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         - Hamdi, Mohamed, El Alem, Anas, and Goita, Kalifa, 2025. Groundwater Storage Estimation in the Saskatchewan River Basin Using
            GRACE/GRACE-FO Gravimetric Data and Machine Learning. Atmosphere, 16(1):50, doi:10.3390/atmos16010050.
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         - Hamlington, B. D., Cheon, S. H., Piecuch, C. G., Karnauskas, K. B., Thompson, P. R., Kim, K. -Y.,
            Reager, J. T., Landerer, F. W., and Frederikse, T., 2019. The Dominant Global Modes of Recent Internal Sea Level
            Variability. Journal of Geophysical Research (Oceans), 124(4):2750–2768, doi:10.1029/2018JC014635.
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- Hamlington, Benjamin D., Piecuch, Christopher G., Reager, John T., Chandanpurkar, Hrishi, Frederikse, Thomas, Nerem, R. Steven,
            Fasullo, John T., and Cheon, Se-Hyeon, 2020. Origin of interannual variability in global mean sea level. Proceedings of
            the National Academy of Science, 117(25):13983–13990, doi:10.1073/pnas.1922190117.
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         - Hammond, W. C., Kreemer, C., Zaliapin, I., and Blewitt, G., 2019. Drought-Triggered Magmatic Inflation, Crustal Strain,
            and Seismicity Near the Long Valley Caldera, Central Walker Lane. Journal of Geophysical Research (Solid Earth), 124(6):6072–6091,
            doi:10.1029/2019JB017354.
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         - Han, S.-C., Shum, C. K., and Matsumoto, K., 2005. GRACE observations of M2 and S2 ocean tides underneath the Filchner-Ronne
            and Larsen ice shelves, Antarctica. Geophysical Research Letters, 32:20311–+, doi:10.1029/2005GL024296.
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- Han, S.-C., Shum, C. K., Jekeli, C., Kuo, C.-Y., Wilson, C., and Seo, K.-W., 2005. Non-isotropic filtering of GRACE temporal
            gravity for geophysical signal enhancement. Geophysical Journal International, 163:18–25, doi:10.1111/j.1365-246X.2005.02756.x.
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- Han, S.-C., Shum, C. K., Jekeli, C., and Alsdorf, D., 2005. Improved estimation of terrestrial water storage changes
            from GRACE. Geophysical Research Letters, 32:7302–+, doi:10.1029/2005GL022382.
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- Han, S.-C., Jekeli, C., and Shum, C. K., 2004. Time-variable aliasing effects of ocean tides, atmosphere, and continental
            water mass on monthly mean GRACE gravity field. Journal of Geophysical Research (Solid Earth), 109(B18):4403–+,
            doi:10.1029/2003JB002501.
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- Han, S.-C., 2004. Efficient Determination of Global Gravity Field from Satellite-to-satellite Tracking Mission. Celestial
            Mechanics and Dynamical Astronomy, 88:69–102.
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- Han, S.-C., Jekeli, C., and Shum, C. K., 2003. Static and temporal gravity field recovery using GRACE potential difference
            observables. Advances in Geosciences, 1:19–26, doi:10.5194/adgeo-1-19-2003.
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- Han, S. C., Shum, C. K., and Braun, A., 2005. High-resolution continental water storage recovery from low-low satellite-to-satellite
            tracking. Journal of Geodynamics, 39:11–28, doi:10.1016/j.jog.2004.08.002.
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- Han, S.-C., Shum, C. K., and Jekeli, C., 2006. Precise estimation of in situ geopotential differences from GRACE low-low
            satellite-to-satellite tracking and accelerometer data. Journal of Geophysical Research (Solid Earth), 111(B10):4411–+,
            doi:10.1029/2005JB003719.
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- Han, S.-C., Shum, C. K., Bevis, M., Ji, C., and Kuo, C.-Y., 2006. Crustal Dilatation Observed by GRACE After the 2004
            Sumatra-Andaman Earthquake. Science, 313:658–662, doi:10.1126/science.1128661.
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- Han, S.-C., Ray, R. D., and Luthcke, S. B., 2007. Ocean tidal solutions in Antarctica from GRACE inter-satellite
            tracking data. Geophysical Research Letters, 34:21607–+, doi:10.1029/2007GL031540.
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- Han, S.-C. and Simons, F. J., 2008. Spatiospectral localization of global geopotential fields from the Gravity Recovery
            and Climate Experiment (GRACE) reveals the coseismic gravity change owing to the 2004 Sumatra-Andaman earthquake. Journal
            of Geophysical Research (Solid Earth), 113(B12):1405–+, doi:10.1029/2007JB004927.
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- Han, S.-C., Rowlands, D. D., Luthcke, S. B., and Lemoine, F. G., 2008. Localized analysis of satellite tracking
            data for studying time-variable Earth's gravity fields. Journal of Geophysical Research (Solid Earth), 113(B12):6401–+,
            doi:10.1029/2007JB005218.
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- Han, S.-C., Sauber, J., Luthcke, S. B., Ji, C., and Pollitz, F. F., 2008. Implications of postseismic gravity change
            following the great 2004 Sumatra-Andaman earthquake from the regional harmonic analysis of GRACE intersatellite tracking data.
            Journal of Geophysical Research (Solid Earth), 113(B12):11413–+, doi:10.1029/2008JB005705.
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- Han, S.-C., Kim, H., Yeo, I.-Y., Yeh, P., Oki, T., Seo, K.-W., Alsdorf, D., and Luthcke, S. B., 2009. Dynamics of surface
            water storage in the Amazon inferred from measurements of inter-satellite distance change. Geophysical Research Letters,
            36:9403–+, doi:10.1029/2009GL037910.
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- Han, S.-C., Yeo, I.-Y., Alsdorf, D., Bates, P., Boy, J.-P., Kim, H., Oki, T., and Rodell, M., 2010. Movement of Amazon surface
            water from time-variable satellite gravity measurements and implications for water cycle parameters in land surface models.
            Geochemistry, Geophysics, Geosystems, 11:9007–+, doi:10.1029/2010GC003214.
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- Han, S.-C., Efficient global gravity field determination from satellite-to-satellite tracking. Ph.D. Thesis, The Ohio State
            University, 2003.
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- Han, S.-C., Sauber, J., and Luthcke, S., 2010. Regional gravity decrease after the 2010 Maule (Chile) earthquake indicates
            large-scale mass redistribution. Geophysical Research Letters, 37:23307–+, doi:10.1029/2010GL045449.
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- Han, S.-C., Sauber, J., and Riva, R., 2011. Contribution of satellite gravimetry to understanding seismic source processes
            of the 2011 Tohoku-Oki earthquake. Geophysical Research Letters, 38:24312, doi:10.1029/2011GL049975.
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- Han, S.-C., Ray, R. D., and Luthcke, S. B., 2010. One centimeter-level observations of diurnal ocean tides from
            global monthly mean time-variable gravity fields. Journal of Geodesy, 84:715–729, doi:10.1007/s00190-010-0405-3.
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- Han, S.-C. and Ditmar, P., 2008. Localized spectral analysis of global satellite gravity fields for recovering time-variable
            mass redistributions. Journal of Geodesy, 82:423–430, doi:10.1007/s00190-007-0194-5.
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- Han, S.-C., Riva, R., Sauber, J., and Okal, E., 2013. Source parameter inversion for recent great earthquakes from a decade-long
            observation of global gravity fields. Journal of Geophysical Research (Solid Earth), 118:1240–1267, doi:10.1002/jgrb.50116.
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- Han, S.-C., Sauber, J., and Pollitz, F., 2014. Broadscale postseismic gravity change following the 2011 Tohoku-Oki earthquake
            and implication for deformation by viscoelastic relaxation and afterslip. Geophysical Research Letters, 41:5797–5805,
            doi:10.1002/2014GL060905.
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- Han, S.-C., Sauber, J., and Pollitz, F., 2015. Coseismic compression/dilatation and viscoelastic uplift/subsidence following
            the 2012 Indian Ocean earthquakes quantified from satellite gravity observations. Geophysical Research Letters, 42:3764–3772,
            doi:10.1002/2015GL063819.
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- Han, S.-C., Sauber, J., and Pollitz, F., 2016. Postseismic gravity change after the 2006-2007 great earthquake doublet and
            constraints on the asthenosphere structure in the central Kuril Islands. Geophysical Research Letters, 43:3169–3177,
            doi:10.1002/2016GL068167.
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- Han, S.-C., 2016. Seasonal clockwise gyration and tilt of the Australian continent chasing the center of mass of the Earth's
            system from GPS and GRACE. Journal of Geophysical Research (Solid Earth), 121:7666–7680, doi:10.1002/2016JB013388.
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- Han, S.-C., 2017. Elastic deformation of the Australian continent induced by seasonal water cycles and the 2010-2011 La Niña
            determined using GPS and GRACE. Geophysical Research Letters, 44:2763–2772, doi:10.1002/2017GL072999.
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- Han, J., Tangdamrongsub, N., Hwang, C., and Abidin, H. Z., 2017. Intensified water storage loss by biomass burning in
            Kalimantan: Detection by GRACE. Journal of Geophysical Research (Solid Earth), 122:2409–2430, doi:10.1002/2017JB014129.
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- Han, S.-C. and Razeghi, S. M., 2017. GPS Recovery of Daily Hydrologic and Atmospheric Mass Variation: A Methodology and
            Results From the Australian Continent. Journal of Geophysical Research (Solid Earth), 122:9328–9343, doi:10.1002/2017JB014603.
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- Han, D. and Cao, G., 2018. Phase difference between groundwater storage changes and groundwater level fluctuations due to
            compaction of an aquifer-aquitard system. Journal of Hydrology, 566:89–98, doi:10.1016/j.jhydrol.2018.09.010.
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- Han, Shin-Chan, Sauber, Jeanne, Pollitz, Fred, and Ray, Richard, 2019. Sea Level Rise in the Samoan Islands Escalated by Viscoelastic
            Relaxation After the 2009 Samoa-Tonga Earthquake. Journal of Geophysical Research (Solid Earth), 124(4):4142–4156,
            doi:10.1029/2018JB017110.
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- Han, Zhiming, Huang, Shengzhi, Huang, Qiang, Leng, Guoyong, Wang, Hao, He, Li, Fang, Wei, and Li, Pei, 2019. Assessing GRACE-based
            terrestrial water storage anomalies dynamics at multi-timescales and their correlations with teleconnection factors in Yunnan
            Province, China. Journal of Hydrology, 574:836–850, doi:10.1016/j.jhydrol.2019.04.093.
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- Han, Zhiming, Huang, Shengzhi, Huang, Qiang, Bai, Qingjun, Leng, Guoyong, Wang, Hao, Zhao, Jing, Wei, Xiaoting, and Zheng,
            Xudong, 2020. Effects of vegetation restoration on groundwater drought in the Loess Plateau, China. Journal of Hydrology,
            591:125566, doi:10.1016/j.jhydrol.2020.125566.
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- Han, Shin-Chan, Ghobadi-Far, Khosro, Ray, Richard D., and Papanikolaou, Thomas, 2020. Tidal Geopotential Dependence on Earth
            Ellipticity and Seawater Density and Its Detection With the GRACE Follow-On Laser Ranging Interferometer. Journal of Geophysical
            Research (Oceans), 125(12):e16774, doi:10.1029/2020JC016774.
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- Han, Zhiming, Huang, Shengzhi, Huang, Qiang, Leng, Guoyong, Liu, Yi, Bai, Qingjun, He, Panxing, Liang, Hao, and Shi, Wuzhi,
            2021. GRACE-based high-resolution propagation threshold from meteorological to groundwater drought. Agricultural and Forest
            Meteorology, 307:108476, doi:10.1016/j.agrformet.2021.108476.
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- Han, Shin-Chan, Ghobadi-Far, Khosro, Yeo, In-Young, McCullough, Christopher M., Lee, Eunjee, and Sauber, Jeanne, 2021. GRACE
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            Mass Changes and Vertical Crustal Deformation in South China Block from GPS and GRACE Measurements. Sensors, 18(1):99,
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            the Yangtze River detected by GRACE. Science in China Series D - Earth Sciences, 49:483–491.
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- Hu, L. and Jiao, J. J., 2015. Calibration of a large-scale groundwater flow model using GRACE data: a case study in the
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- Hu, Zengyun, Chen, Xi, Zhou, Qiming, Yin, Gang, and Liu, Jun, 2022. Dynamical variations of the terrestrial water cycle components
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            Arid and Humid Basins. Geophysical Research Letters, 48(1):e91069, doi:10.1029/2020GL091069.
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            River basin detected by GRACE. Science China Earth Sciences, 49(5):483–491, doi:10.1007/s11430-006-0483-5.
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            storage change within the Great Lakes Water Basin using GRACE. Journal of Geophysical Research (Solid Earth), 117(B16):8401,
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- Huang, C. Y., Roddy, P. A., Sutton, E. K., Stoneback, R., Pfaff, R. F., Gentile, L. C., and Delay,
            S. H., 2013. Ion-neutral coupling during deep solar minimum. Journal of Atmospheric and Solar-Terrestrial Physics,
            103:138–146, doi:10.1016/j.jastp.2012.11.009.
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- Huang, Z., Pan, Y., Gong, H., Yeh, P. J.-F., Li, X., Zhou, D., and Zhao, W., 2015. Subregional-scale groundwater depletion
            detected by GRACE for both shallow and deep aquifers in North China Plain. Geophysical Research Letters, 42:1791–1799,
            doi:10.1002/2014GL062498.
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- Huang, Y., Salama, M. S., Krol, M. S., Su, Z., Hoekstra, A. Y., Zeng, Y., and Zhou, Y., 2015. Estimation of
            human-induced changes in terrestrial water storage through integration of GRACE satellite detection and hydrological modeling:
            A case study of the Yangtze River basin. Water Resources Research, 51:8494–8516, doi:10.1002/2015WR016923.
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- Huang, Y., Wu, Q., Huang, C. Y., and Su, Y.-J., 2016. Thermosphere variation at different altitudes over the northern
            polar cap during magnetic storms. Journal of Atmospheric and Solar-Terrestrial Physics, 146:140–148, doi:10.1016/j.jastp.2016.06.003.
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- Huang, J., Pavlic, G., Rivera, A., Palombi, D., and Smerdon, B., 2016. Mapping groundwater storage variations with GRACE:
            a case study in Alberta, Canada. Hydrogeology Journal, 24:1663–1680, doi:10.1007/s10040-016-1412-0.
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- Huang, C. Y.-Y., Huang, Y., Su, Y.-J., Sutton, E. K., Rotan Hairston, M., and Coley, W. R., 2016. Ionosphere-thermosphere
            (IT) response to solar wind forcing during magnetic storms. Journal of Space Weather and Space Climate, 6(27):A4, doi:10.1051/swsc/2015041.
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- Huang, C. Y., Huang, Y., Su, Y.-J., Huang, T., and Sutton, E. K., 2017. High-Latitude Neutral Mass Density Maxima.
            Journal of Geophysical Research (Space Physics), 122(A11):10, doi:10.1002/2017JA024334.
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- Huang, Zhiyong, Yeh, Pat J. -F., Pan, Yun, Jiao, Jiu Jimmy, Gong, Huili, Li, Xiaojuan, Güntner, Andreas, Zhu, Yunqiang,
            Zhang, Chong, and Zheng, Longqun, 2019. Detection of large-scale groundwater storage variability over the karstic regions
            in Southwest China. Journal of Hydrology, 569:409–422, doi:10.1016/j.jhydrol.2018.11.071.
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- Huang, Wen, Männel, Benjamin, Sakic, Pierre, Ge, Maorong, and Schuh, Harald, 2020. Integrated processing of ground- and
            space-based GPS observations: improving GPS satellite orbits observed with sparse ground networks. Journal of Geodesy,
            94(10):96, doi:10.1007/s00190-020-01424-1.
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- Huang, Qi, Qin, Guanghua, Zhang, Yongqiang, Tang, Qiuhong, Liu, Changming, Xia, Jun, Chiew, Francis H. S., and Post,
            David, 2020. Using remote sensing data-based hydrological model calibrations for predicting runoff in ungauged or poorly gauged
            catchments. Water Resources Research, 56(8):e28205, doi:10.1029/2020WR028205.
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- Huang, Zhiyong, Jiao, Jiu Jimmy, Luo, Xin, Pan, Yun, and Jin, Taoyong, 2021. Drought and Flood Characterization and Connection
            to Climate Variability in the Pearl River Basin in Southern China Using Long-Term GRACE and Reanalysis Data. Journal of
            Climate, 34(6):2053–2078, doi:10.1175/JCLI-D-20-0332.1.
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- Huang, Zhiyong, Jiao, Jiu Jimmy, Luo, Xin, Pan, Yun, and Zhang, Chong, 2019. Sensitivity Analysis of Leakage Correction of
            GRACE Data in Southwest China Using A-Priori Model Simulations: Inter-Comparison of Spherical Harmonics, Mass Concentration
            and In Situ Observations. Sensors, 19(14):3149, doi:10.3390/s19143149.
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- Huang, Peng, Song, Jinxi, Cheng, Dandong, Sun, Haotian, Kong, Feihe, Jing, Kexing, and Wu, Qiong, 2021. Understanding the
            intra-annual variability of streamflow by incorporating terrestrial water storage from GRACE into the Budyko framework in
            the Qinba Mountains. Journal of Hydrology, 603:126988, doi:10.1016/j.jhydrol.2021.126988.
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- Huang, Zhiyong, Li, Shanshan, Cai, Lin, Fan, Diao, and Huang, Lingyong, 2022. Estimation of the Center of Mass of GRACE-Type
            Gravity Satellites. Remote Sensing, 14(16):4030, doi:10.3390/rs14164030.
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- Huang, Zhiyong, Li, Shanshan, Huang, Lingyong, and Fan, Diao, 2022. On-Orbit Calibration of the KBR Antenna Phase Center of
            GRACE-Type Gravity Satellites. Remote Sensing, 14(14):3395, doi:10.3390/rs14143395.
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- Huang, Zhiyong, Yeh, Pat J. -F., Jiao, Jiu Jimmy, Luo, Xin, Pan, Yun, Long, Yuannan, Zhang, Chong, and Zheng, Longqun, 2023.
            A New Approach for Assessing Groundwater Recharge by Combining GRACE and Baseflow With Case Studies in Karst Areas of Southwest
            China. Water Resources Research, 59(2):e2022WR032091, doi:10.1029/2022WR032091.
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- Huang, Jia, Cao, Lianhai, Wang, Lei, Liu, Liwei, Yu, Baobao, and Han, Long, 2023. Identification and Spatiotemporal Migration
            Analysis of Groundwater Drought Events in the North China Plain. Atmosphere, 14(6):961, doi:10.3390/atmos14060961.
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- Huang, Haijun, Feng, Guanbin, Cao, Yeer, Feng, Guanning, Dai, Zhikai, Tian, Peizhi, Wei, Juncheng, and Cai, Xitian, 2023.
            Simulation and Driving Factor Analysis of Satellite-Observed Terrestrial Water Storage Anomaly in the Pearl River Basin Using
            Deep Learning. Remote Sensing, 15(16):3983, doi:10.3390/rs15163983.
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- Huang, Liangke, Wang, Zhuohao, Zhang, Tengxu, Yao, Chaolong, Li, Haojun, and Liu, Lilong, 2024. Temporal and spatial variations
            of terrestrial water storage in the northeastern Tibetan Plateau retrieved by GNSS observations. Science of the Total Environment,
            933:173189, doi:10.1016/j.scitotenv.2024.173189.
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- Huang, Cheryl Y., Delay, Susan H., Roddy, Patrick A., and Sutton, Eric K., 2011. Periodic structures in the equatorial ionosphere.
            Radio Science, 46(6):RS0D14, doi:10.1029/2010RS004569.
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- Huang, C. Y., Su, Y. -J., Sutton, E. K., Weimer, D. R., and Davidson, R. L., 2014. Energy coupling during
            the August 2011 magnetic storm. Journal of Geophysical Research (Space Physics), 119(2):1219–1232, doi:10.1002/2013JA019297.
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- Huang, J. and Zhou, Q., 2016. Relations Between Grace-Derived Water Storage Change with Precipitation and Temperature Over
            Kaidu River Basin, China. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information
            Sciences, 41B8:405–407, doi:10.5194/isprs-archives-XLI-B8-405-2016.
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- Huang, Zhongwei, Tang, Qiuhong, Lo, Min-Hui, Liu, Xingcai, Lu, Hui, Zhang, Xuejun, and Leng, Guoyong, 2019. The influence
            of groundwater representation on hydrological simulation and its assessment using satellite-based water storage variation.
            Hydrological Processes, 33(8):1218–1230, doi:10.1002/hyp.13393.
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- Huang, Jun, Feng, Wei, Yang, Yuanyuan, Xiong, Yuhao, Yang, Meng, and Zhong, Min, 2025. Significant Impact of Non-Tidal Oceanic
            and Atmospheric Mass Variations on Regional Ocean Mass Budgets: A Comparative Analysis Across 19 Representative Regions. Journal
            of Geophysical Research (Oceans), 130(4):e2024JC021477, doi:10.1029/2024JC021477.
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- Huang, Haijun, Cai, Xitian, Li, Lu, Wu, Xiaolu, Zhao, Zichun, and Tan, Xuezhi, 2025. Interpreting Global Terrestrial Water
            Storage Dynamics and Drivers with Explainable Deep Learning. Remote Sensing, 17(13):2118, doi:10.3390/rs17132118.
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         - Huarcaya, Victor, Dovale Álvarez, Miguel, Yamamoto, Kohei, Yang, Yichao, Gozzo, Stefano, Mart\'ınez Cano, Pablo,
            Mehmet, Moritz, Esteban Delgado, Juan José, Jia, Jianjun, and Heinzel, Gerhard, 2023. Single-Element Dual-Interferometer
            for Precision Inertial Sensing: Sub-Picometer Structural Stability and Performance as a Reference for Laser Frequency Stabilization.
            Sensors, 23(24):9758, doi:10.3390/s23249758.
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         - Huckfeldt, Moritz, Wöske, Florian, Rievers, Benny, and List, Meike, 2024. GRACE Follow-On accelerometer data recovery
            by high-precision environment modelling. Advances in Space Research, 73(12):5783–5805, doi:10.1016/j.asr.2024.03.068.
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         - Hughes, C. W. and Legrand, P., 2004. Future Benefits of Time-Varying Gravity Missions to Ocean Circulation Studies. Earth
            Moon and Planets, 94:73–81, doi:10.1007/s11038-005-0452-6.
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- Hughes, C. W. and Stepanov, V., 2003. Feasibility, and Contribution to Ocean Circulation Studies, of Ocean Bottom Pressure
            Determination. Space Science Reviews, 108:217–224, doi:10.1023/A:1026202705381.
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- Hughes, C. W., Tamisiea, M. E., Bingham, R. J., and Williams, J., 2012. Weighing the ocean: Using a single
            mooring to measure changes in the mass of the ocean. Geophysical Research Letters, 39:17602, doi:10.1029/2012GL052935.
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         - Hulsman, Petra, Winsemius, Hessel C., Michailovsky, Claire I., Savenije, Hubert H. G., and Hrachowitz, Markus, 2020.
            Using altimetry observations combined with GRACE to select parameter sets of a hydrological model in a data-scarce region.
            Hydrology and Earth System Sciences, 24(6):3331–3359, doi:10.5194/hess-24-3331-2020.
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- Hulsman, Petra, Hrachowitz, Markus, and Savenije, Hubert H. G., 2021. Improving the Representation of Long Term Storage
            Variations With Conceptual Hydrological Models in Data Scarce Regions. Water Resources Research, 57(4):e28837, doi:10.1029/2020WR028837.
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         - Humphrey, V., Gudmundsson, L., and Seneviratne, S. I., 2016. Assessing Global Water Storage Variability from GRACE: Trends,
            Seasonal Cycle, Subseasonal Anomalies and Extremes. Surveys in Geophysics, 37:357–395, doi:10.1007/s10712-016-9367-1.
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- Humphrey, V., Gudmundsson, L., and Seneviratne, S. I., 2017. A global reconstruction of climate-driven subdecadal water
            storage variability. Geophysical Research Letters, 44:2300–2309, doi:10.1002/2017GL072564.
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- Humphrey, Vincent and Gudmundsson, Lukas, 2019. GRACE-REC: a reconstruction of climate-driven water storage changes over the
            last century. Earth System Science Data, 11(3):1153–1170, doi:10.5194/essd-11-1153-2019.
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- Humphrey, Vincent, Rodell, Matthew, and Eicker, Annette, 2023. Using Satellite-Based Terrestrial Water Storage Data: A Review.
            Surveys in Geophysics, 44(5):1489–1517, doi:10.1007/s10712-022-09754-9.
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         - Hunegnaw, A., Siegismund, F., Hipkin, R., and Mork, K. A., 2009. Absolute flow field estimation for the Nordic seas from
            combined gravimetric, altimetric, and in situ data. Journal of Geophysical Research (Oceans), 114(C13):2022–+,
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         - Hussain, M., Eshagh, M., Ahmad, Z., Sadiq, M., and Fatolazadeh, F., 2016. Changes in gravitational parameters inferred from
            time variable GRACE data-A case study for October 2005 Kashmir earthquake. Journal of Applied Geophysics, 132:174–183,
            doi:10.1016/j.jappgeo.2016.07.008.
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            Computers and Geosciences, 32:442–451, doi:10.1016/j.cageo.2005.07.006.
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- Hwang, C., Yang, Y., Kao, R., Han, J., Shum, C. K., Galloway, D. L., Sneed, M., Hung, W.-C., Cheng, Y.-S., and Li,
            F., 2016. Time-varying land subsidence detected by radar altimetry: California, Taiwan and north China. Scientific Reports,
            6:28160, doi:10.1038/srep28160.
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         - Iaboni, Craig, Lobo, Deepan, Choi, Ji-Won, and Abichandani, Pramod, 2022. Event-Based Motion Capture System for Online Multi-Quadrotor
            Localization and Tracking. Sensors, 22(9):3240, doi:10.3390/s22093240.
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         - Idowu, Dorcas, Assessing the Utilization of Remote Sensing and GIS Techniques for Flood Studies and Land Use/Land Cover Analysis
            Through Case Studies in Nigeria and the USA. Ph.D. Thesis, Geology and Geological Engineering, Colorado School of Mines, 2021.
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         - Ilhan, Esin, Veeresha, P., and Baskonus, Haci Mehmet, 2021. Fractional approach for a mathematical model of atmospheric dynamics
            of CO$_2$ gas with an efficient method. Chaos Solitons and Fractals, 152:111347, doi:10.1016/j.chaos.2021.111347.
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         - Ilk, K., Kusche, J., and Rudolph, S., 2002. A contribution to data combination in ill-posed downward continuation problems.
            Journal of Geodynamics, 33:75–99, doi:10.1016/S0264-3707(01)00056-4.
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         - Im, S. T. and Kharuk, V. I., 2015. Dynamics of water mass in the Central Siberia permafrost zone based on gravity
            survey from the grace satellites. Izvestiya Atmospheric and Oceanic Physics, 51:806–818, doi:10.1134/S0001433815080046.
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         - Inácio, P., Ditmar, P., Klees, R., and Farahani, H. H., 2015. Analysis of star camera errors in GRACE data and
            their impact on monthly gravity field models. Journal of Geodesy, 89:551–571, doi:10.1007/s00190-015-0797-1.
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         - Ince, E. S. and Pagiatakis, S. D., 2017. GOCE Gradiometer Measurements Response to Ionospheric Dynamics. Journal
            of Geophysical Research (Space Physics), 122(A11):10, doi:10.1002/2017JA023890.
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         - Innerkofler, Josef, Kirchengast, Gottfried, Schwärz, Marc, Pock, Christian, Jäggi, Adrian, Andres, Yago, and Marquardt,
            Christian, 2020. Precise Orbit Determination for Climate Applications of GNSS Radio Occultation including Uncertainty Estimation.
            Remote Sensing, 12(7):1180, doi:10.3390/rs12071180.
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         - Iorfida, Elisabetta, Daras, Ilias, Haagmans, Roger, and Strømme, Anja, 2023. Swarm A and C Accelerometers: Data Validation
            and Scientific Interpretation. Earth and Space Science, 10(2):e2022EA002458, doi:10.1029/2022EA002458.
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         - Iorio, L., 2005. The impact of the new Earth gravity models on the measurement of the Lense Thirring effect with a new satellite.
            New Astronomy, 10:616–635, doi:10.1016/j.newast.2005.02.006.
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- Iorio, L. and Doornbos, E., 2005. How to reach a few percent level in determining the Lense Thirring effect?. General Relativity
            and Gravitation, 37:1059–1074, doi:10.1007/s10714-005-0091-2.
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- Iorio, L., 2006. The impact of the new Earth gravity model EIGEN-CG03C on the measurement of the Lense-Thirring effect with
            some existing Earth satellites. General Relativity and Gravitation, 38:523–527, doi:10.1007/s10714-006-0239-8.
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- Iorio, L., 2006. A Critical Analysis of a Recent Test of the Lense-Thirring Effect with the LAGEOS Satellites. Journal
            of Geodesy, 80:128–136, doi:10.1007/s00190-006-0058-4.
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- Iorio, L., 2007. An assessment of the measurement of the Lense Thirring effect in the Earth gravity field, in reply to: ``On
            the measurement of the Lense Thirring effect using the nodes of the LAGEOS satellites, in reply to ``On the reliability of
            the so far performed tests for measuring the Lense Thirring effect with the LAGEOS satellites'' by L. Iorio,'' by I. Ciufolini
            and E. Pavlis. Planetary and Space Science, 55:503–511, doi:10.1016/j.pss.2006.08.001.
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- Iorio, L. and Morea, A., 2004. The Impact of the New Earth Gravity Models on the Measurement of the Lense-Thirring Effect.
            General Relativity and Gravitation, 36:1321–1333, doi:10.1023/B:GERG.0000022390.05674.99.
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- Iorio, L., 2005. The impact of the new CHAMP and GRACE Earth gravity models on the measurement of the general relativistic
            Lense-Thirring effect with the LAGEOS and LAGEOS II satellites. In Ch. Reigber, H. Luehr, P. Schwintzer, and J. Wickert (editors),
            Earth observation with CHAMP: Results from Three Years in Orbit, pp. 187–192, Springer Verlag.
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- Iorio, L., 2006. The new Earth gravity models and the measurement of the Lense-Thirring effect. In M. Novello, S. P. Bergliaffa,
            and R. Ruffini (editors), On Recent Developments in Theoretical and Experimental General Relativity, Gravitation and Relativistic
            Field Theories, pp. 1011–1020, World Scientific.
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- Iorio, L., 2008. Perspectives on Measuring the PPN Parameters $\beta$ and $\gamma$ in Earth's Gravitational Field to High
            Accuracy with Champ/grace Models. International Journal of Modern Physics D, 17:815–829, doi:10.1142/S0218271808012516.
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- Iorio, L., 2009. An Assessment of the Systematic Uncertainty in Present and Future Tests of the Lense-Thirring Effect with
            Satellite Laser Ranging. Space Science Reviews, 148:363–381, doi:10.1007/s11214-008-9478-1.
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- Iorio, L., 2009. Will the recently approved LARES mission be able to measure the Lense-Thirring effect at 1%?. General
            Relativity and Gravitation, 41:1717–1724, doi:10.1007/s10714-008-0742-1.
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- Iorio, L., 2009. Towards a 1% measurement of the Lense-Thirring effect with LARES?. Advances in Space Research, 43:1148–1157,
            doi:10.1016/j.asr.2008.10.016.
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- Iorio, L., 2003. The Impact of the Static Part of the Earth's Gravity Field on Some Tests of General Relativity with Satellite
            Laser Ranging. Celestial Mechanics and Dynamical Astronomy, 86:277–294, doi:10.1023/A:1024223200686.
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- Iorio, L. and Lucchesi, D., 2003. LAGEOS-type satellites in critical supplementary orbit configuration and the Lense-Thirring
            effect detection. Classical and Quantum Gravity, 20:2477–2490, doi:10.1088/0264-9381/20/13/302.
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- Iorio, L., Ciufolini, I., Pavlis, E. C., Schiller, S., Dittus, H., and Lämmerzahl, C., 2004. On the possibility
            of measuring the Lense Thirring effect with a LAGEOS LAGEOS II OPTIS mission. Classical and Quantum Gravity, 21:2139–2151,
            doi:10.1088/0264-9381/21/8/016.
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- Iorio, L., 2005. On the reliability of the so-far performed tests for measuring the Lense Thirring effect with the LAGEOS
            satellites. New Astronomy, 10:603–615, doi:10.1016/j.newast.2005.01.001.
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- Iorio, L., 2005. On the possibility of testing the Dvali Gabadadze Porrati brane-world scenario with orbital motions in the
            Solar System. Journal of Cosmology and Astroparticle Physics, 7:8–+, doi:10.1088/1475-7516/2005/07/008.
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- Iorio, L., 2012. Constraining the electric charges of some astronomical bodies in Reissner-Nordström spacetimes and generic
            r $^-2$-type power-law potentials from orbital motions. General Relativity and Gravitation, pp. 1753–1767, doi:10.1007/s10714-012-1365-0.
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- Iorio, L., 2012. Dynamical orbital effects of general relativity on the satellite-to-satellite range and range-rate in the
            GRACE mission: A sensitivity analysis. Advances in Space Research, 50:334–345, doi:10.1016/j.asr.2012.04.012.
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- Iorio, L., Luca Ruggiero, M., and Corda, C., 2013. Novel considerations about the error budget of the LAGEOS-based tests of
            frame-dragging with GRACE geopotential models. Acta Astronautica, 91:141–148, doi:10.1016/j.actaastro.2013.06.002.
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- Iorio, L., 2017. A comment on ``A test of general relativity using the LARES and LAGEOS satellites and a GRACE Earth gravity
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- Iorio, Lorenzo, 2002. LETTER TO THE EDITOR: A critical approach to the concept of a polar, low-altitude LARES satellite. Classical
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- Iorio, Lorenzo, Lucchesi, David M., and Ciufolini, Ignazio, 2002. The LARES mission revisited: an alternative scenario. Classical
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- Iorio, Lorenzo, Ciufolini, Ignazio, and Pavlis, Erricos C., 2002. Measuring the relativistic perigee advance with satellite
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- Iorio, Lorenzo, 2002. Constraints on a Yukawa gravitational potential from laser data of LAGEOS satellites. Physics Letters
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- Iorio, L., 2006. On the use of Ajisai and Jason-1 satellites for tests of general relativity. New Astronomy, 12(3):224–233,
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- Iorio, Lorenzo, 2010. On possible a-priori ``imprinting'' of General Relativity itself on the performed Lense-Thirring tests
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- Iorio, Lorenzo, 2010. Conservative evaluation of the uncertainty in the LAGEOS-LAGEOS II Lense-Thirring test. Central European
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- Iorio, L., 2012. Model-independent constraints on r-3 extra-interactions from orbital motions. Annalen der Physik,
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- Iorio, Lorenzo, 2018. On Testing Frame-Dragging with LAGEOS and a Recently Announced Geodetic Satellite. Universe,
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- Jiang, Zhongshan, Hsu, Ya-Ju, Yuan, Linguo, Cheng, Shuai, Li, Qinzheng, and Li, Meng, 2021. Estimation of daily hydrological
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            and Vermeersen, Bert L., 2021. Assessing Global Present Day Surface Mass Transport and Glacial Isostatic Adjustment From Inversion
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            Spatiotemporal Patterns of Terrestrial Water Storage Variations Using GNSS Vertical Data in Sichuan, China. Journal of
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- Jiang, Zhongshan, Hsu, Ya-Ju, Yuan, Linguo, Cheng, Shuai, Feng, Wei, Tang, Miao, and Yang, Xinghai, 2022. Insights into hydrological
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            Cezong, 2023. Modified flood potential index (MFPI) for flood monitoring in terrestrial water storage depletion basin using
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- Jiang, Zhongshan, Tang, Miao, Yang, Xinghai, Wen, Haiping, Yuan, Linguo, Shen, Yingchun, Feng, Wei, and Zhong, Min, 2024.
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- Jiang, Zhongshan, Zhang, Hui, Tang, Miao, Yang, Xinghai, Yuan, Linguo, Yuan, Yuan, Feng, Wei, and Zhong, Min, 2025. Tracking
            California's striking water storage gains attributed to intensive atmospheric rivers. Journal of Hydrology, 653:132804,
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         - Jiao, Jiashuang, Zhang, Yongzhi, Yin, Peng, Zhang, Kainan, Wang, Yipeng, and Bilker-Koivula, Mirjam, 2019. Changing Moho Beneath
            the Tibetan Plateau Revealed by GRACE Observations. Journal of Geophysical Research (Solid Earth), 124(6):5907–5923,
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            nonlinear signal in Antarctic ice-sheet mass loss revealed by GRACE and GPS. Geophysical Journal International, 233(2):826–838,
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            of the Tibetan Plateau Due to Multi-Component Land Water Loading. Geophysical Research Letters, 51(13):e2024GL108684,
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         - Jin, S., Chambers, D. P., and Tapley, B. D., 2010. Hydrological and oceanic effects on polar motion from GRACE and
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            from GRACE and hydrological models. Journal of Geodynamics, 62:40–48, doi:10.1016/j.jog.2012.01.009.
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- Jin, S. and Feng, G., 2013. Large-scale variations of global groundwater from satellite gravimetry and hydrological models,
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- Jin, S. and Zou, F., 2015. Re-estimation of glacier mass loss in Greenland from GRACE with correction of land-ocean leakage
            effects. Global and Planetary Change, 135:170–178, doi:10.1016/j.gloplacha.2015.11.002.
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            Ocean Mass Change From Land Using GRACE. Earth and Space Science, 7(5):e01104, doi:10.1029/2020EA001104.
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- Jin, Biao, Li, Yuqiang, Jiang, Kecai, Li, Zhulian, and Chen, Shanshan, 2021. GRACE-FO Antenna Phase Center Modeling and Precise
            Orbit Determination with Single Receiver Ambiguity Resolution. Remote Sensing, 13(21):4204, doi:10.3390/rs13214204.
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            Receiver Ambiguity Resolution. Progress in Astronomy, 40:416–428, doi:10.3969/j.issn.1000-8349.2022.03.07.
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            Aral Sea: An Integrated View from Multiple Satellite Observations. Remote Sensing, 9(9):900, doi:10.3390/rs9090900.
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         - Jing, Wenlong, Zhang, Pengyan, and Zhao, Xiaodan, 2019. A comparison of different GRACE solutions in terrestrial water storage
            trend estimation over Tibetan Plateau. Scientific Reports, 9:1765, doi:10.1038/s41598-018-38337-1.
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            water storage in the Lancang-Mekong river basin from GRACE solutions and land surface model. Journal of Hydrology,
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            Ocean circulation implications. Journal of Geophysical Research (Oceans), 118:4228–4240, doi:10.1002/jgrc.20307.
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            from GRACE data, land surface models, and well observations. Water Resources Research, 50:2679–2692, doi:10.1002/2013WR014633.
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            moisture estimates in West Africa through GRACE data assimilation. Journal of Hydrology, 575:192–201, doi:10.1016/j.jhydrol.2019.05.042.
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- Kaban, M. K., Tesauro, M., and Cloetingh, S., 2010. An integrated gravity model for Europe's crust and upper mantle.
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            Change Impacts on Endemic Cichlid Habitats in Northern Tanzania. Remote Sensing, 9(6):623, doi:10.3390/rs9060623.
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            J., 2024. Statistical downscaling of GRACE terrestrial water storage changes based on the Australian Water Outlook model.
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            mission using only GPS data. Journal of Geodesy, 80:322–331, doi:10.1007/s00190-006-0073-5.
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- Kang, Z., Tapley, B., Bettadpur, S., Ries, J., and Nagel, P., 2006. Precise orbit determination for GRACE using accelerometer
            data. Advances in Space Research, 38:2131–2136, doi:10.1016/j.asr.2006.02.021.
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            orbit determination. Advances in Space Research, 39:1524–1530, doi:10.1016/j.asr.2006.11.003.
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- Kang, Z., Tapley, B., Chen, J., Ries, J., and Bettadpur, S., 2009. Geocenter variations derived from GPS tracking of the GRACE
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- Kang, Zhigui, Tapley, Byron, Chen, Jianli, Ries, John, and Bettadpur, Srinivas, 2019. Geocenter motion time series derived
            from GRACE GPS and LAGEOS observations. Journal of Geodesy, 93(10):1931–1942, doi:10.1007/s00190-019-01292-4.
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            recovery. Journal of Geodesy, 94(9):85, doi:10.1007/s00190-020-01414-3.
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- Kang, K. and Bender, P. L., 2021. Improved Measurements of Short-Period Mass Variations With Future Earth Gravity Missions.
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- Kang, Zhigui, Bettadpur, Srinivas, Save, Himanshu, and Nagel, Peter, 2024. GPS-Based Precise Orbit Determination of LEO Satellites
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         - Kim, H., Yeh, P. J.-F., Oki, T., and Kanae, S., 2009. Role of rivers in the seasonal variations of terrestrial water
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- Kim, J. and Lee, S. W., 2009. Flight performance analysis of GRACE K-band ranging instrument with simulation data. Acta
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            propagation into GRACE Antarctic mass change estimates. Geophysical Journal International, 206:1306–1314, doi:10.1093/gji/ggw211.
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            a Satellite Gravimetry Mission. Journal of Astronomy and Space Sciences, 35:243–252, doi:10.5140/JASS.2018.35.4.243.
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         - Kracheletz, Magdalena, Liu, Ziyu, Springer, Anne, Kusche, Jürgen, and Friederichs, Petra, 2025. Would the 2021 Western
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- Krauss, S., Temmer, M., Veronig, A., Baur, O., and Lammer, H., 2015. Thermospheric and geomagnetic responses to interplanetary
            coronal mass ejections observed by ACE and GRACE: Statistical results. Journal of Geophysical Research (Space Physics),
            120:8848–8860, doi:10.1002/2015JA021702.
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- Krauss, S., Behzadpour, S., Temmer, M., and Lhotka, C., 2020. Exploring Thermospheric Variations Triggered by Severe Geomagnetic
            Storm on 26 August 2018 Using GRACE Follow-On Data. Journal of Geophysical Research (Space Physics), 125(5):e27731,
            doi:10.1029/2019JA027731.
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- Krauss, Sandro, Drescher, Lukas, Temmer, Manuela, Suesser-Rechberger, Barbara, Strasser, Andreas, and Kroisz, Sophia, 2024.
            SODA – A tool to predict storm-induced orbit decays for low Earth-orbiting satellites. Journal of Space Weather and
            Space Climate, 14:23, doi:10.1051/swsc/2024022.
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- Krauss, S., Fichtinger, B., Lammer, H., Hausleitner, W., Kulikov, Yu. N., Ribas, I., Shematovich, V. I., Bisikalo, D.,
            Lichtenegger, H. I. M., Zaqarashvili, T. V., Khodachenko, M. L., and Hanslmeier, A., 2012. Solar flares
            as proxy for the young Sun: satellite observed thermosphere response to an X17.2 flare of Earth's upper atmosphere. Annales
            Geophysicae, 30(8):1129–1141, doi:10.5194/angeo-30-1129-2012.
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- Krauss, S., Temmer, M., and Vennerstrom, S., 2018. Multiple Satellite Analysis of the Earth's Thermosphere and Interplanetary
            Magnetic Field Variations Due to ICME/CIR Events During 2003-2015. Journal of Geophysical Research (Space Physics),
            123(10):8884–8894, doi:10.1029/2018JA025778.
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         - Krichman, Benjamin, Bettadpur, Srinivas, and Pekker, Tatyana, 2022. Assessment of Model-Derived Mass Flux Relative to Satellite
            Gravimetry via a Water Balance in North America. Journal of Hydrometeorology, 23(11):1773–1787, doi:10.1175/JHM-D-21-0216.1.
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         - Krishnamurthy R, P. Krishna, Fisher, Joshua B., Schimel, David S., and Kareiva, Peter M., 2020. Applying Tipping Point Theory
            to Remote Sensing Science to Improve Early Warning Drought Signals for Food Security. Earth's Future, 8(3):e01456,
            doi:10.1029/2019EF001456.
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         - Kroes, R., Montenbruck, O., Bertiger, W., and Visser, P., 2005. Precise GRACE baseline determination using GPS. GPS Solutions,
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         - Krogh, P., Andersen, O., Michailovsky, C., Bauer-Gottwein, P., Rowlands, D., Luthcke, S., and Chinn, D., 2010. Evaluating
            terrestrial water storage variations from regionally constrained GRACE mascon data and hydrological models over Southern Africa
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         - Kroner, C., Thomas, M., Dobslaw, H., Abe, M., and Weise, A., 2009. Seasonal effects of non-tidal oceanic mass shifts in observations
            with superconducting gravimeters. Journal of Geodynamics, 48(3):354–359, doi:10.1016/j.jog.2009.09.009.
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         - Kuai, Jiawei, Liu, Libo, Lei, Jiuhou, Liu, Jing, Zhao, Biqiang, Chen, Yiding, Le, Huijun, Wang, Yungang, and Hu, Lianhuan,
            2017. Regional differences of the ionospheric response to the July 2012 geomagnetic storm. Journal of Geophysical Research
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            in Space Research, 53:243–256, doi:10.1016/j.asr.2013.11.022.
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- Kuang, Da, Bertiger, Willy, Desai, Shailen D., Haines, Bruce J., and Yuan, Dah-Ning, 2019. Observed geocenter motion from
            precise orbit determination of GRACE satellites using GPS tracking and accelerometer data. Journal of Geodesy, 93(10):1835–1844,
            doi:10.1007/s00190-019-01283-5.
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         - Kucharski, D., Kirchner, G., Lim, Hyung-Chul, and Koidl, F., 2011. Optical response of nanosatellite BLITS measured by the
            Graz 2 kHz SLR system. Advances in Space Research, 48(8):1335–1340, doi:10.1016/j.asr.2011.06.016.
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         - Kuczynska-Siehien, Joanna, Piretzidis, Dimitrios, Sideris, Michael G., Olszak, Tomasz, and Szabó, Viktor, 2019. Monitoring
            of extreme land hydrology events in central Poland using GRACE, land surface models and absolute gravity data. Journal
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         - Kuhlmann, J., Dobslaw, H., Petrick, C., and Thomas, M., 2013. Ocean bottom pressure signals around Southern Africa from in
            situ measurements, satellite data, and modeling. Journal of Geophysical Research (Oceans), 118:4889–4898, doi:10.1002/jgrc.20372.
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- Kuhlmann, J., Rogozhina, I., Dill, R., Bergmann-Wolf, I., and Thomas, M., 2015. A method for reconstructing global ocean-induced
            surface displacements from land-based in-situ stations. Journal of Geodynamics, 83:18–27, doi:10.1016/j.jog.2014.10.003.
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         - Kumar, S. V., Zaitchik, B. F., Peters-Lidard, C. D., Rodell, M., Reichle, R., Li, B., Jasinski, M., Mocko,
            D., Getirana, A., De Lannoy, G., Cosh, M. H., Hain, C. R., Anderson, M., Arsenault, K. R., Xia, Y., and Ek,
            M., 2016. Assimilation of Gridded GRACE Terrestrial Water Storage Estimates in the North American Land Data Assimilation System.
            Journal of Hydrometeorology, 17:1951–1972, doi:10.1175/JHM-D-15-0157.1.
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- Kumar, Sujay V., Jasinski, Michael, Mocko, David M., Rodell, Matthew, Borak, Jordan, Li, Bailing, Beaudoing, Hiroko Kato,
            and Peters-Lidard, Christa D., 2019. NCA-LDAS Land Analysis: Development and Performance of a Multisensor, Multivariate Land
            Data Assimilation System for the National Climate Assessment. Journal of Hydrometeorology, 20(8):1571–1593, doi:10.1175/JHM-D-17-0125.1.
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- Kumar, Ranveer, Gaur, Shishir, Soni, Pramod, Maurya, Puneet, and Ohri, Anurag, 2024. HRU-based Downscaling of GRACE-TWS to
            Quantify the Hydrogeological Fluxes and Specific Yield in the Lower Middle Ganga Basin. Journal of Hydrology, 639:131591,
            doi:10.1016/j.jhydrol.2024.131591.
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         - Kumari, Shomya, Kumar, Deepak, Kumar, Manish, and Pande, Chaitanya B., 2023. Modeling of standardized groundwater index of
            Bihar using machine learning techniques. Physics and Chemistry of the Earth, 130:103395, doi:10.1016/j.pce.2023.103395.
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         - Kundu, Bhaskar, Vissa, Naresh Krishna, and Gahalaut, V. K., 2015. Influence of anthropogenic groundwater unloading in
            Indo-Gangetic plains on the 25 April 2015 Mw 7.8 Gorkha, Nepal earthquake. Geophysical Research Letters, 42(24):10,607–10,613,
            doi:10.1002/2015GL066616.
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- Kundu, Bhaskar, Vissa, Naresh Krishna, Gahalaut, Kalpna, Gahalaut, Vineet Kumar, Panda, Dibyashakti, and Malik, Kapil, 2019.
            Influence of anthropogenic groundwater pumping on the 2017 November 12 M7.3 Iran-Iraq border earthquake. Geophysical Journal
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         - Kuo, C.-Y., Shum, C. K., Guo, J., Yi, Y., Braun, A., Fukumori, I., Matsumoto, K., Sato, T., and Shibuya, K., 2008. Southern
            Ocean mass variation studies using GRACE and satellite altimetry. Earth, Planets, and Space, 60:477–485, doi:10.1186/BF03352814.
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         - Kuppel, S., Fan, Y., and Jobbágy, E. G., 2017. Seasonal hydrologic buffer on continents: Patterns, drivers and
            ecological benefits. Advances in Water Resources, 102:178–187, doi:10.1016/j.advwatres.2017.01.004.
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         - Kupriyanov, Alexey, Reis, Arthur, Schilling, Manuel, Müller, Vitali, and Müller, Jürgen, 2024. Benefit of enhanced
            electrostatic and optical accelerometry for future gravimetry missions. Advances in Space Research, 73(6):3345–3362,
            doi:10.1016/j.asr.2023.12.067.
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         - Kuroishi, Y., 2009. Improved geoid model determination for Japan from GRACE and a regional gravity field model. Earth,
            Planets, and Space, 61:807–813, doi:10.1186/BF03353191.
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         - Kurtenbach, E., Mayer-Gürr, T., and Eicker, A., 2009. Deriving daily snapshots of the Earth's gravity field from GRACE
            L1B data using Kalman filtering. Geophysical Research Letters, 36:17102–+, doi:10.1029/2009GL039564.
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- Kurtenbach, E., Eicker, A., Mayer-Gürr, T., Holschneider, M., Hayn, M., Fuhrmann, M., and Kusche, J., 2012. Improved
            daily GRACE gravity field solutions using a Kalman smoother. Journal of Geodynamics, 59:39–48, doi:10.1016/j.jog.2012.02.006.
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- Kurtenbach, Enrico, Entwicklung eines Kalman-Filters zur Bestimmung kurzzeitiger Variationen des Erdschwerefeldes aus Daten
            der Satellitenmission GRACEEntwicklung eines Kalman-Filters zur Bestimmung kurzzeitiger Variationen des Erdschwerefeldes aus
            Daten der Satellitenmission GRACEDevelopment of a Kalman filter to determine short-term variations in the earth's gravity
            field from data from the GRACE satellite mission;. Ph.D. Thesis, Rheinische Friedrich Wilhelms University of Bonn, Germany,
            2011.
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         - Kusche, J. and Schrama, E. J. O., 2005. Surface mass redistribution inversion from global GPS deformation and Gravity
            Recovery and Climate Experiment (GRACE) gravity data. Journal of Geophysical Research (Solid Earth), 110(B9):9409–+,
            doi:10.1029/2004JB003556.
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- Kusche, J., 2007. Approximate decorrelation and non-isotropic smoothing of time-variable GRACE-type gravity field models.
            Journal of Geodesy, 81:733–749, doi:10.1007/s00190-007-0143-3.
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- Kusche, J., 2002. On fast multigrid iteration techniques for the solution of normal equations in satellite gravity recovery.
            Journal of Geodynamics, 33:173–186, doi:10.1016/S0264-3707(01)00062-X.
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- Kusche, J., 2001. Implementation of multigrid solvers for satellite gravity anomaly recovery. Journal of Geodesy, 74:773–782,
            doi:10.1007/s001900000140.
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- Kusche, J., Schmidt, R., Petrovic, S., and Rietbroek, R., 2009. Decorrelated GRACE time-variable gravity solutions by GFZ,
            and their validation using a hydrological model. Journal of Geodesy, 83:903–913, doi:10.1007/s00190-009-0308-3.
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- Kusche, J., Klemann, V., and Bosch, W., 2012. Mass distribution and mass transport in the Earth system. Journal of Geodynamics,
            59:1–8, doi:10.1016/j.jog.2012.03.003.
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- Kusche, J., Uebbing, B., Rietbroek, R., Shum, C. K., and Khan, Z. H., 2016. Sea level budget in the Bay of Bengal
            (2002-2014) from GRACE and altimetry. Journal of Geophysical Research (Oceans), 121:1194–1217, doi:10.1002/2015JC011471.
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- Kusche, J., Eicker, A., Forootan, E., Springer, A., and Longuevergne, L., 2016. Mapping probabilities of extreme continental
            water storage changes from space gravimetry. Geophysical Research Letters, 43:8026–8034, doi:10.1002/2016GL069538.
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- Kusche, Jürgen, Strohmenger, Christina, Gerdener, Helena, Uebbing, Bernd, Springer, Anne, Ewerdwalbesloh, Yorck, Eicker,
            Annette, Braitenberg, Carla, Pastorutti, Alberto, Pail, Roland, Zingerle, Philipp, Schlaak, Marius, Reguzzoni, Mirko, Rossi,
            Lorenzo, Migliaccio, Federica, and Daras, Ilias, 2025. Benefit of MAGIC and multipair quantum satellite gravity missions in
            Earth science applications. Geophysical Journal International, 242(2):ggaf195, doi:10.1093/gji/ggaf19510.22541/essoar.173884278.80824874/v1.
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         - Kutoglu, Hakan S. and Becek, Kazimierz, 2021. Analysis of Ocean Bottom Pressure Anomalies and Seismic Activities in the MedRidge
            Zone. Remote Sensing, 13(7):1242, doi:10.3390/rs13071242.
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         - Kvas, Andreas, Behzadpour, Saniya, Ellmer, Matthias, Klinger, Beate, Strasser, Sebastian, Zehentner, Norbert, and Mayer-Gürr,
            Torsten, 2019. ITSG-Grace2018: Overview and Evaluation of a New GRACE-Only Gravity Field Time Series. Journal of Geophysical
            Research (Solid Earth), 124(8):9332–9344, doi:10.1029/2019JB017415.
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- Kvas, Andreas and Mayer-Gürr, Torsten, 2019. GRACE gravity field recovery with background model uncertainties. Journal
            of Geodesy, 93(12):2543–2552, doi:10.1007/s00190-019-01314-1.
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- Kvas, Andreas, Brockmann, Jan Martin, Krauss, Sandro, Schubert, Till, Gruber, Thomas, Meyer, Ulrich, Mayer-Gürr, Torsten,
            Schuh, Wolf-Dieter, Jäggi, Adrian, and Pail, Roland, 2021. GOCO06s - a satellite-only global gravity field model. Earth
            System Science Data, 13(1):99–118, doi:10.5194/essd-13-99-2021.
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- Kvas, A., Boergens, E., Dobslaw, H., Eicker, A., Mayer-Guerr, T., and Güntner, A., 2024. Evaluating long-term water storage
            trends in small catchments and aquifers from a joint inversion of 20 years of GRACE/GRACE-FO mission data. Geophysical
            Journal International, 236(2):1002–1012, doi:10.1093/gji/ggad468.
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         - Kwok, R. and Morison, J., 2016. Sea surface height and dynamic topography of the ice-covered oceans from CryoSat-2: 2011-2014.
            Journal of Geophysical Research (Oceans), 121:674–692, doi:10.1002/2015JC011357.
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         - Ladstädter, F., Steiner, A. K., Foelsche, U., Haimberger, L., Tavolato, C., and Kirchengast, G., 2011. An assessment
            of differences in lower stratospheric temperature records from (A)MSU, radiosondes, and GPS radio occultation. Atmospheric
            Measurement Techniques, 4:1965–1977, doi:10.5194/amt-4-1965-2011.
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         - Lai, M. J., Shum, C. K., Baramidze, V., and Wenston, P., 2009. Triangulated spherical splines for geopotential reconstruction.
            Journal of Geodesy, 83:695–708, doi:10.1007/s00190-008-0283-0.
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- Lai, Yu, Zhang, Bao, Yao, Yibin, Liu, Lin, Yan, Xiao, He, Yulin, and Ou, Shuyuan, 2022. Reconstructing the data gap between
            GRACE and GRACE follow-on at the basin scale using artificial neural network. Science of the Total Environment, 823:153770,
            doi:10.1016/j.scitotenv.2022.153770.
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         - Lakshmi, V., Fayne, J., and Bolten, J., 2018. A comparative study of available water in the major river basins of the world.
            Journal of Hydrology, 567:510–532, doi:10.1016/j.jhydrol.2018.10.038.
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         - Lambert, A., Courtier, N., and James, T. S., 2006. Long-term monitoring by absolute gravimetry: Tides to postglacial
            rebound. Journal of Geodynamics, 41:307–317, doi:10.1016/j.jog.2005.08.032.
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- Lambert, A., Huang, J., Kamp, G., Henton, J., Mazzotti, S., James, T. S., Courtier, N., and Barr, A. G., 2013. Measuring
            water accumulation rates using GRACE data in areas experiencing glacial isostatic adjustment: The Nelson River basin. Geophysical
            Research Letters, 40:6118–6122, doi:10.1002/2013GL057973.
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         - Lan, Wen-Hau, Lee, Chi-Ming, Kuo, Chung-Yen, Lin, Li-Ching, and Handoko, Eko Yuli, 2025. Regional sea level budget around
            Taiwan and Philippines over 2002‒2021 inferred from GRACE, altimetry, and in-situ hydrographic data: Regional sea level
            budget around Taiwan and Philippines\textellipsis. Journal of Geodesy, 99(1):5, doi:10.1007/s00190-024-01928-0.
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         - Lan Anh, Dinh Thi and Aires, Filipe, 2019. River Discharge Estimation based on Satellite Water Extent and Topography: An Application
            over the Amazon. Journal of Hydrometeorology, 20(9):1851–1866, doi:10.1175/JHM-D-18-0206.1.
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         - Landerer, F. W., Dickey, J. O., and Güntner, A., 2010. Terrestrial water budget of the Eurasian pan-Arctic
            from GRACE satellite measurements during 2003–2009. Journal of Geophysical Research (Atmospheres), 115(D14):23115–+,
            doi:10.1029/2010JD014584.
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- Landerer, F. W. and Swenson, S. C., 2012. Accuracy of scaled GRACE terrestrial water storage estimates. Water
            Resources Research, 48:4531, doi:10.1029/2011WR011453.
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- Landerer, F. W. and Volkov, D. L., 2013. The anatomy of recent large sea level fluctuations in the Mediterranean
            Sea. Geophysical Research Letters, 40:553–557, doi:10.1002/grl.50140.
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- Landerer, F. W., Wiese, D. N., Bentel, K., Boening, C., and Watkins, M. M., 2015. North Atlantic meridional
            overturning circulation variations from GRACE ocean bottom pressure anomalies. Geophysical Research Letters, 42:8114–8121,
            doi:10.1002/2015GL065730.
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- Landerer, Felix W., Flechtner, Frank M., Save, Himanshu, Webb, Frank H., Bandikova, Tamara, Bertiger, William I., Bettadpur,
            Srinivas V., Byun, Sung Hun, Dahle, Christoph, Dobslaw, Henryk, Fahnestock, Eugene, Harvey, Nate, Kang, Zhigui, Kruizinga,
            Gerhard L. H., Loomis, Bryant D., McCullough, Christopher, Murböck, Michael, Nagel, Peter, Paik, Meegyeong, Pie,
            Nadege, Poole, Steve, Strekalov, Dmitry, Tamisiea, Mark E., Wang, Furun, Watkins, Michael M., Wen, Hui-Ying, Wiese, David
            N., and Yuan, Dah-Ning, 2020. Extending the Global Mass Change Data Record: GRACE Follow-On Instrument and Science Data Performance.
            Geophysical Research Letters, 47(12):e88306, doi:10.1029/2020GL088306.
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         - Lara, Martin and Russell, Ryan P., 2008. Fast design of repeat ground track orbits in high-fidelity geopotentials. Journal
            of the Astronautical Sciences, 56(3):311–324, doi:10.1007/BF03256555.
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         - Larochelle, Stacy, Chanard, Kristel, Fleitout, Luce, Fortin, Jérôme, Gualandi, Adriano, Longuevergne, Laurent,
            Rebischung, Paul, Violette, Sophie, and Avouac, Jean-Philippe, 2022. Understanding the Geodetic Signature of Large Aquifer
            Systems: Example of the Ozark Plateaus in Central United States. Journal of Geophysical Research (Solid Earth), 127(3):e23097,
            doi:10.1029/2021JB023097.
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         - Larson, K. M., Ashby, N., Hackman, C., and Bertiger, W., 2007. An assessment of relativistic effects for low Earth orbiters:
            the GRACE satellites. Metrologia, 44:484–490, doi:10.1088/0026-1394/44/6/007.
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         - Lasser, Martin, Meyer, Ulrich, Arnold, Daniel, and Jäggi, Adrian, 2020. Stochastic noise modelling of kinematic orbit
            positions in the Celestial Mechanics Approach. Advances in Geosciences, 50:101–113, doi:10.5194/adgeo-50-101-2020.
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- Lasser, Martin, Meyer, Ulrich, Jäggi, Adrian, Mayer-Gürr, Torsten, Kvas, Andreas, Neumayer, Karl Hans, Dahle, Christoph,
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            background model implementations in orbit and gravity field determination software. Advances in Geosciences, 55:1–11,
            doi:10.5194/adgeo-55-1-2020.
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         - Latychev, K., Mitrovica, J. X., Tamisiea, M. E., Tromp, J., Christara, C. C., and Moucha, R., 2005. GIA-induced
            secular variations in the Earth's long wavelength gravity field: Influence of 3-D viscosity variations [rapid communication].
            Earth and Planetary Science Letters, 240:322–327, doi:10.1016/j.epsl.2005.10.001.
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         - Levi, B. G., 2003. GRACE Satellites Start to Map Earth's Gravity Field. Physics Today, 56(2):18–18, doi:10.1063/1.1564334.
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         - Li, B., Rodell, M., Zaitchik, B. F., Reichle, R. H., Koster, R. D., and van Dam, T. M., 2012. Assimilation
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- Li, T., Wu, P., Wang, H., Jia, L., and Steffen, H., 2018. Hydrology signal from GRACE gravity data in the Nelson River basin,
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- Li, T., Wu, P., Steffen, H., and Wang, H., 2018. In search of laterally heterogeneous viscosity models of Glacial Isostatic
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- Li, Z., Ziebart, M., Bhattarai, S., and Harrison, D., 2019. A shadow function model based on perspective projection and atmospheric
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- Li, Wenhao, Shum, C. K., Li, Fei, Zhang, Shengkai, Ming, Feng, Chen, Wei, Zhang, Bao, Lei, Jintao, and Zhang, Qingchuan,
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- Li, Fupeng, Kusche, Jürgen, Rietbroek, Roelof, Wang, Zhengtao, Forootan, Ehsan, Schulze, Kerstin, and Lück, Christina,
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- Li, Ruoxi and Lei, Jiuhou, 2021. Responses of Thermospheric Mass Densities to the October 2016 and September 2017 Geomagnetic
            Storms Revealed From Multiple Satellite Observations. Journal of Geophysical Research (Space Physics), 126(1):e28534,
            doi:10.1029/2020JA028534.
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- Li, Fupeng, Kusche, Jürgen, Chao, Nengfang, Wang, Zhengtao, and Löcher, Anno, 2021. Long Term (1979 Present) Total
            Water Storage Anomalies Over the Global Land Derived by Reconstructing GRACE Data. Geophysical Research Letters, 48(8):e93492,
            doi:10.1029/2021GL093492.
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- Li, Ruoxi, Lei, Jiuhou, and Dang, Tong, 2021. The Solar Eclipse Effects on the Upper Thermosphere. Geophysical Research
            Letters, 48(15):e94749, doi:10.1029/2021GL094749.
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- Li, Zhen, Zhang, Zizhan, Scanlon, Bridget R., Sun, Alexander Y., Pan, Yun, Qiao, Shuqing, Wang, Hansheng, and Jia, Qiuyang,
            2022. Combining GRACE and satellite altimetry data to detect change in sediment load to the Bohai Sea. Science of the Total
            Environment, 818:151677, doi:10.1016/j.scitotenv.2021.151677.
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- Li, Junhua and Wang, Shusen, 2022. Seasonal variations and long-term trends of groundwater over the Canadian landmass. Hydrogeology
            Journal, 30(2):401–415, doi:10.1007/s10040-022-02460-1.
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- Li, Min, Xu, Tianhe, Shi, Yali, Wei, Kai, Fei, Xianming, and Wang, Dixing, 2022. Adaptive Kalman Filter for Real-Time Precise
            Orbit Determination of Low Earth Orbit Satellites Based on Pseudorange and Epoch-Differenced Carrier-Phase Measurements. Remote
            Sensing, 14(9):2273, doi:10.3390/rs14092273.
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- Li, Zhen, Chao, Benjamin F., Wang, H. S., and Zhang, Z. Z., 2022. Antarctica ice-mass variations on interannual
            timescale: Coastal Dipole and propagating transports. Earth and Planetary Science Letters, 595:117789, doi:10.1016/j.epsl.2022.117789.
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- Li, Zhen, Zhang, Zizhan, and Wang, Hansheng, 2022. On Tide Aliasing in GRACE Time-Variable Gravity Observations. Remote
            Sensing, 14(21):5403, doi:10.3390/rs14215403.
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- Li, Zhen, Chao, Benjamin Fong, Zhang, Zizhan, Jiang, Liming, and Wang, Hansheng, 2022. Greenland Interannual Ice Mass Variations
            Detected by GRACE Time-Variable Gravity. Geophysical Research Letters, 49(19):e2022GL100551, doi:10.1029/2022GL100551.
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- Li, Ruoxi and Lei, Jiuhou, 2021. The Determination of Satellite Orbital Decay From POD Data During Geomagnetic Storms. Space
            Weather, 19(4):e2020SW002664, doi:10.1029/2020SW002664.
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- Li, Xianpao, Zhong, Bo, Li, Jiancheng, and Liu, Renli, 2023. Joint inversion of GNSS and GRACE/GFO data for terrestrial water
            storage changes in the Yangtze River Basin. Geophysical Journal International, 233(3):1596–1616, doi:10.1093/gji/ggad014.
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- Li, Duo, Chang, Xin, Yu, Jianbo, Bai, Yanzheng, Wang, Chengrui, and Zhou, Zebing, 2023. A method and its validation for measuring
            the absolute time-delay of the read-out system of a space electrostatic accelerometer. Review of Scientific Instruments,
            94(3):034703, doi:10.1063/5.0130286.
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- Li, Xianpao, Zhong, Bo, Li, Jiancheng, and Liu, Renli, 2023. Inversion of terrestrial water storage changes from GNSS vertical
            displacements using a priori constraint: A case study of the Yunnan Province, China. Journal of Hydrology, 617:129126,
            doi:10.1016/j.jhydrol.2023.129126.
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- Li, Ruoxi, Lei, Jiuhou, Kusche, Jürgen, Dang, Tong, Huang, Fuqing, Luan, Xiaoli, Zhang, Shun-Rong, Yan, Maodong, Yang,
            Ziyi, Liu, Feifan, and Dou, Xiankang, 2023. Large-Scale Disturbances in the Upper Thermosphere Induced by the 2022 Tonga Volcanic
            Eruption. Geophysical Research Letters, 50(3):e2022GL102265, doi:10.1029/2022GL102265.
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- Li, Xianpao, Zhong, Bo, Li, Jiancheng, and Liu, Renli, 2023. Inversion of GNSS Vertical Displacements for Terrestrial Water
            Storage Changes Using Slepian Basis Functions. Earth and Space Science, 10(2):e2022EA002608, doi:10.1029/2022EA002608.
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- Li, Wanqiu, Zhang, Chuanyin, Wang, Wei, Guo, Jinyun, Shen, Yingchun, Wang, Zhiwei, Bi, Jingxue, Guo, Qiuying, Zhong, Yulong,
            Li, Wei, Zhu, Chengcheng, and Xu, Pengfei, 2023. Inversion of Regional Groundwater Storage Changes Based on the Fusion of
            GNSS and GRACE Data: A Case Study of Shaanxi–Gansu–Ningxia. Remote Sensing, 15(2):520, doi:10.3390/rs15020520.
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- Li, Quanzhou, Pan, Yun, Zhang, Chong, and Gong, Huili, 2023. Quantifying Multi-Source Uncertainties in GRACE-Based Estimates
            of Groundwater Storage Changes in Mainland China. Remote Sensing, 15(11):2744, doi:10.3390/rs15112744.
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- Li, Duoduo, Zhou, Xuhua, and Li, Kai, 2023. Centimeter-Level Orbit Determination of GRACE-C Using IGS-RTS Data. Remote
            Sensing, 15(7):1832, doi:10.3390/rs15071832.
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- Li, Wenbo, Liu, Libo, Chen, Yiding, Xiao, Zhuowei, Le, Huijun, and Zhang, Ruilong, 2023. Improving the Extraction Ability
            of Thermospheric Mass Density Variations From Observational Data by Deep Learning. Space Weather, 21(7):e2022SW003376,
            doi:10.1029/2022SW003376.
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- Li, Pengao, Yu, Haiyang, Zhou, Peng, Zhang, Ping, and Wang, Ruili, 2023. Downscaling inversion of GRACE-derived groundwater
            storage changes based on ensemble learning. International Journal of Digital Earth, 16(1):2998–3022, doi:10.1080/17538947.2023.2242316.
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- Li, Qian, Chen, Xiuzhi, Yuan, Wenping, Lu, Haibo, Shen, Ruoque, Wu, Shengbiao, Gong, Fanxi, Dai, Yuhang, Liu, Liyang, Sun,
            Qingling, Zhang, Chaoqun, and Su, Yongxian, 2021. Remote Sensing of Seasonal Climatic Constraints on Leaf Phenology Across
            Pantropical Evergreen Forest Biome. Earth's Future, 9(9):e2021EF002160, doi:10.1029/2021EF002160.
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- Li, Qin, Liu, Xiuguo, Zhong, Yulong, Wang, Mengmeng, Bai, Hongbing, and Xiao, Cuiyu, 2023. Assessing the interannual and subseasonal
            variabilities in water storage using multi-source soil moisture products and GRACE/GRACE-FO satellites and its applications.
            Journal of Hydrology, 627:130439, doi:10.1016/j.jhydrol.2023.130439.
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- Li, Xiaolong, Jin, Taoyong, Liu, Bingshi, Chao, Nengfang, Li, Fupeng, and Cai, Zuansi, 2023. The Influence of ENSO on the
            Long-Term Water Storage Anomalies in the Middle-Lower Reaches of the Yangtze River Basin: Evaluation and Analysis. Earth
            and Space Science, 10(10):e2023EA003007, doi:10.1029/2023EA003007.
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- Li, Congcong, Yu, Qiang, Zhang, Yongqiang, Ma, Ning, Tian, Jing, and Zhang, Xuanze, 2023. Dominant Drivers for Terrestrial
            Water Storage Changes Are Different in Northern and Southern China. Journal of Geophysical Research (Atmospheres),
            128(23):e2022JD038074, doi:10.1029/2022JD038074.
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- Li, Bailing and Rodell, Matthew, 2023. How Have Hydrological Extremes Changed over the Past 20 Years?. Journal of Climate,
            36(24):8581–8599, doi:10.1175/JCLI-D-23-0199.1.
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- Li, Xianpao, Zhong, Bo, Chen, Jianli, Li, Jiancheng, and Wang, Haihong, 2024. Investigation of 2020-2022 extreme floods and
            droughts in Sichuan Province of China based on joint inversion of GNSS and GRACE/GFO data. Journal of Hydrology, 632:130868,
            doi:10.1016/j.jhydrol.2024.130868.
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- Li, Bailing and Rodell, Matthew, 2024. Terrestrial water storage in 2023. Nature Reviews Earth and Environment, 5(4):247–249,
            doi:10.1038/s43017-024-00545-x.
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- Li, Hongwei, He, Youquan, Gu, Yuanyuan, and Qiao, Gang, 2024. A Comparative Study Of Mass Balance In The Lambert Glacier And
            Amery Ice Shelf Along The Chinese Inland Traverse During 2019–2023 Using Altimetry, Gravity, And In-Situ Observations.
            ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 481:323–328,
            doi:10.5194/isprs-archives-XLVIII-1-2024-323-2024.
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- Li, Hao-si, Yi, Shuang, Luo, Zi-ren, and Xu, Peng, 2024. Revealing High-Temporal-Resolution Flood Evolution With Low Latency
            Using GRACE Follow-On Ranging Data. Water Resources Research, 60(6):e2023WR036332, doi:10.1029/2023WR036332.
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- Li, Kai, Tang, Chengpan, Zhou, Shanshi, Hu, Xiaogong, and Zhou, Xuhua, 2024. High-precision GPS orbit determination by integrating
            the measurements from regional ground stations and LEO onboard receivers. Satellite Navigation, 5(1):27, doi:10.1186/s43020-024-00147-4.
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- Li, Fupeng, Kusche, Jürgen, Sneeuw, Nico, Siebert, Stefan, Gerdener, Helena, Wang, Zhengtao, Chao, Nengfang, Chen, Gang,
            and Tian, Kunjun, 2024. Forecasting Next Year's Global Land Water Storage Using GRACE Data. Geophysical Research Letters,
            51(17):e2024GL109101, doi:10.1029/2024GL109101.
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- Li, Jiahao, Jin, Guowang, Xiong, Xin, Zhou, Lv, Ye, Hao, Shi, Quanjie, and Yang, He, 2024. Surface Time Series Response and
            Deformation Cause Analysis in 2021 Zhengzhou Extreme Weather, China. Earth and Space Science, 11(8):e2024EA003643,
            doi:10.1029/2024EA003643.
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- Li, Huixiang, Pan, Yun, Yeh, Pat J. -F., Zhang, Chong, Huang, Zhiyong, Xu, Li, Wang, Haigang, Zeng, Linghai, Gong, Huili,
            and Famiglietti, James S., 2024. A New GRACE Downscaling Approach for Deriving High-Resolution Groundwater Storage Changes
            Using Ground-Based Scaling Factors. Water Resources Research, 60(11):2023WR035210, doi:10.1029/2023WR035210.
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- Li, Wanqiu, Bao, Lifeng, Yao, Guobiao, Wang, Fengwei, Guo, Qiuying, Zhu, Jie, Zhu, Jinjie, Wang, Zhiwei, Bi, Jingxue, Zhu,
            Chengcheng, Zhong, Yulong, and Lu, Shanbo, 2024. The analysis on groundwater storage variations from GRACE/GRACE-FO in recent
            20 years driven by influencing factors and prediction in Shandong Province, China. Scientific Reports, 14:5819, doi:10.1038/s41598-024-55588-3.
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- Li, JianCheng, Zhang, ShouJian, Zou, XianCai, and Jiang, WeiPing, 2010. Precise orbit determination for GRACE with zero-difference
            kinematic method. Chinese Science Bulletin, 55(7):600–606, doi:10.1007/s11434-009-0286-0.
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- Li, Juan, Zuo, Juncheng, Chen, Meixiang, Tan, Wei, and Yang, Yiqiu, 2013. Assessing the global averaged sea-level budget from
            2003 to 2010. Acta Oceanologica Sinica, 32(10):16–23, doi:10.1007/s13131-013-0361-x.
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- Li, Jin and Shen, Wenbin, 2012. GRACE detection of the medium- to far-field coseismic gravity changes caused by the 2004 M
            $_W$9.3 Sumatra-Andaman earthquake. Earthquake Science, 25(3):235–240, doi:10.1007/s11589-012-0849-z.
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- Li, Wang, Zhang, Wen, Zhong, Zhu, and Li, 2019. Bridging Terrestrial Water Storage Anomaly During GRACE/GRACE-FO Gap Using
            SSA Method: A Case Study in China. Sensors, 19(19):4144, doi:10.3390/s19194144.
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- Li, Wenzhao, El-Askary, Hesham, Lakshmi, Venkat, Piechota, Thomas, and Struppa, Daniele, 2020. Earth Observation and Cloud
            Computing in Support of Two Sustainable Development Goals for the River Nile Watershed Countries. Remote Sensing, 12(9):1391,
            doi:10.3390/rs12091391.
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- Li, Jifei and Ma, Jinzhu, 2024. Evaluating the Dynamics of Groundwater Storage and Its Sustainability in the Loess Plateau:
            The Integrated Impacts of Climate Change and Human Activities. Remote Sensing, 16(23):4375, doi:10.3390/rs16234375.
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- Li, Fupeng, Springer, Anne, Kusche, Jürgen, Gutknecht, Benjamin D., and Ewerdwalbesloh, Yorck, 2025. Reanalysis and Forecasting
            of Total Water Storage and Hydrological States by Combining Machine Learning With CLM Model Simulations and GRACE Data Assimilation.
            Water Resources Research, 61(2):2024WR037926, doi:10.1029/2024WR037926.
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- Li, Haosi, Xu, Peng, Tang, He, and Yi, Shuang, 2025. Revisiting GRACE Follow-On KBR Antenna Phase Center Calibration by Addressing
            Multipath Noise. Remote Sensing, 17(3):353, doi:10.3390/rs17030353.
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- Li, Hao-si, Yi, Shuang, Han, Shin-Chan, and Tang, He, 2025. Daily Regional Gravity Field Estimation Using GRACE Follow-On
            Line-of-Sight Gravity Differences. Journal of Geophysical Research (Solid Earth), 130(5):e2024JB030089, doi:10.1029/2024JB030089.
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- Li, Ling, He, Changyong, Zheng, Dunyong, Li, Shaoning, and Zhao, Dong, 2025. A Prior Knowledge-Enhanced Deep Learning Framework
            for Improved Thermospheric Mass Density Prediction. Atmosphere, 16(5):539, doi:10.3390/atmos16050539.
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- Li, Ruoxi, Lei, Jiuhou, Zhang, Shun-Rong, Liu, Feifan, Chen, Xuetao, Luan, Xiaoli, and Meng, Xing, 2025. Were Gravity Waves
            or Lamb Waves Responsible for the Large-Scale Thermospheric Response to the Tonga Eruption?. AGU Advances, 6(2):e2024AV001470,
            doi:10.1029/2024AV001470.
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- Li, Xuliang, Xue, Yayong, Wu, Di, Tan, Shaojun, Cao, Xue, and Zhao, Wusheng, 2025. Precipitation Governs Terrestrial Water
            Storage Anomaly Decline in the Hengduan Mountains Region, China, Amid Climate Change. Remote Sensing, 17(14):2447,
            doi:10.3390/rs17142447.
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- Li, Yang, Guo, Jinyun, Sun, Yu, Zhou, Jiangcun, and Sun, Heping, 2025. Investigating the closures of sea level budgets in
            China's adjacent seas. Scientific Reports, 15(1):23224, doi:10.1038/s41598-025-06214-3.
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- Li, Bofeng, Wu, Tianhao, and Ge, Haibo, 2025. Deep neural network based precise orbit prediction for low earth orbit (LEO)
            satellites. Journal of Geodesy, 99(9):75, doi:10.1007/s00190-025-01999-7.
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- Li, Jifei, Ma, Jinzhu, Zhou, Ying, Duan, Zhihua, and Guo, Yuning, 2025. Groundwater Crisis in the Eastern Loess Plateau: Evolution
            of Storage, Linkages with the North China Plain, and Driving Mechanisms. Remote Sensing, 17(16):2785, doi:10.3390/rs17162785.
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         - Liang, Jingjing, Yang, Zongliang, and Lin, Peirong, 2019. Systematic Hydrological Evaluation of the Noah-MP Land Surface Model
            over China. Advances in Atmospheric Sciences, 36(11):1171–1187, doi:10.1007/s00376-019-9016-y.
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- Liang, Hongbao, Zhan, Wei, and Li, Jinwu, 2021. Vertical surface displacement of mainland China from GPS using the multisurface
            function method. Advances in Space Research, 68(12):4898–4915, doi:10.1016/j.asr.2021.02.024.
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         - Liau, J.-R. and Chao, B. F., 2017. Variation of Antarctic circumpolar current and its intensification in relation to
            the southern annular mode detected in the time-variable gravity signals by GRACE satellite. Earth, Planets, and Space,
            69:93, doi:10.1186/s40623-017-0678-3.
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         - Libero, G., Ciriello, V., and Tartakovsky, D. M., 2024. Dynamic mode decomposition of GRACE satellite data. Advances
            in Water Resources, 193:104834, doi:10.1016/j.advwatres.2024.104834.
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- Libero, G. and Ciriello, V., 2025. Dominant spatiotemporal structures in total water storage anomalies. Advances in Water
            Resources, 203:105015, doi:10.1016/j.advwatres.2025.105015.
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         - Licata, Richard J., Mehta, Piyush M., Tobiska, W. Kent, Bowman, Bruce R., and Pilinski, Marcin D., 2021. Qualitative and Quantitative
            Assessment of the SET HASDM Database. Space Weather, 19(8):e02798, doi:10.1029/2021SW002798.
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         - Liesch, T. and Ohmer, M., 2016. Comparison of GRACE data and groundwater levels for the assessment of groundwater depletion
            in Jordan. Hydrogeology Journal, 24:1547–1563, doi:10.1007/s10040-016-1416-9.
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         - Limberger, M., Liang, W., Schmidt, M., Dettmering, D., and Hugentobler, U., 2013. Regional representation of F2 Chapman parameters
            based on electron density profiles. Annales Geophysicae, 31:2215–2227, doi:10.5194/angeo-31-2215-2013.
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         - Lin, T., Hwang, C., Tseng, T.-P., and Chao, B. F., 2012. Low-degree gravity change from GPS data of COSMIC and GRACE
            satellite missions. Journal of Geodynamics, 53:34–42, doi:10.1016/j.jog.2011.08.004.
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- Lin, P., Wei, J., Yang, Z.-L., Zhang, Y., and Zhang, K., 2016. Snow data assimilation-constrained land initialization improves
            seasonal temperature prediction. Geophysical Research Letters, 43:11, doi:10.1002/2016GL070966.
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- Lin, Lu, Gao, Man, Liu, Jintao, Wang, Jiarong, Wang, Shuhong, Chen, Xi, and Liu, Hu, 2020. Understanding the effects of climate
            warming on streamflow and active groundwater storage in an alpine catchment: the upper Lhasa River. Hydrology and Earth
            System Sciences, 24(3):1145–1157, doi:10.5194/hess-24-1145-2020.
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- Lin, Peirong, Yang, Zong-Liang, Wei, Jiangfeng, Dickinson, Robert E., Zhang, Yongfei, and Zhao, Long, 2020. Assimilating multi-satellite
            snow data in ungauged Eurasia improves the simulation accuracy of Asian monsoon seasonal anomalies. Environmental Research
            Letters, 15(6):064033, doi:10.1088/1748-9326/ab80ef.
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- Lin, Hong, Cheng, Xiao, Zheng, Lei, Peng, Xiaoqing, Feng, Wei, and Peng, Fukai, 2022. Recent Changes in Groundwater and Surface
            Water in Large Pan-Arctic River Basins. Remote Sensing, 14(3):607, doi:10.3390/rs14030607.
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         - Liu, W. T., Xie, X., Tang, W., and Zlotnicki, V., 2006. Spacebased observations of oceanic influence on the annual variation
            of South American water balance. Geophysical Research Letters, 33:8710–+, doi:10.1029/2006GL025683.
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- Liu, X., Ditmar, P., Siemes, C., Slobbe, D. C., Revtova, E., Klees, R., Riva, R., and Zhao, Q., 2010. DEOS Mass Transport
            model (DMT-1) based on GRACE satellite data: methodology and validation. Geophysical Journal International, 181:769–788,
            doi:10.1111/j.1365-246X.2010.04533.x.
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- Liu, R., Ma, S.-Y., and Lühr, H., 2011. Predicting storm-time thermospheric mass density variations at CHAMP and GRACE
            altitudes. Annales Geophysicae, 29:443–453, doi:10.5194/angeo-29-443-2011.
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- Liu, H., Doornbos, E., Yamamoto, M., and Tulasi Ram, S., 2011. Strong thermospheric cooling during the 2009 major stratosphere
            warming. Geophysical Research Letters, 38:L12102, doi:10.1029/2011GL047898.
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- Liu, W. and Miao, Y.-X., 2011. Analysis of Land Water Storage in Southwest China Based on GRACE Data. Chinese Astronomy
            and Astrophysics, 35:421–427, doi:10.1016/j.chinastron.2011.10.009.
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- Liu, X., Thayer, J. P., Burns, A., Wang, W., and Sutton, E., 2014. Altitude variations in the thermosphere mass density
            response to geomagnetic activity during the recent solar minimum. Journal of Geophysical Research (Space Physics),
            119:2160–2177, doi:10.1002/2013JA019453.
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- Liu, J., Gu, D., Ju, B., Lai, Y., and Yi, D., 2015. Relative clock estimation method between two LEO satellites with a double-difference
            solution constraint. Acta Astronautica, 109:34–41, doi:10.1016/j.actaastro.2014.12.014.
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- Liu, W., Wang, L., Zhou, J., Li, Y., Sun, F., Fu, G., Li, X., and Sang, Y.-F., 2016. A worldwide evaluation of basin-scale
            evapotranspiration estimates against the water balance method. Journal of Hydrology, 538:82–95, doi:10.1016/j.jhydrol.2016.04.006.
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- Liu, Y.-C., Hwang, C., Han, J., Kao, R., Wu, C.-R., Shih, H.-C., and Tangdamrongsub, N., 2016. Sediment-Mass Accumulation
            Rate and Variability in the East China Sea Detected by GRACE. Remote Sensing, 8:777, doi:10.3390/rs8090777.
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- Liu, Y., Zhou, C., Tang, Q., Li, Z., Song, Y., Qing, H., Ni, B., and Zhao, Z., 2018. The seasonal distribution of sporadic
            E layers observed from radio occultation measurements and its relation with wind shear measured by TIMED/TIDI. Advances
            in Space Research, 62:426–439, doi:10.1016/j.asr.2018.04.026.
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- Liu, Fok, Tenzer, Chen, and Chen, 2019. Akaike's Bayesian Information Criterion for the Joint Inversion of Terrestrial Water
            Storage Using GPS Vertical Displacements, GRACE and GLDAS in Southwest China. Entropy, 21(7):664, doi:10.3390/e21070664.
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- Liu, Zhendi, Fang, Hanxian, Hoque, M. M., Weng, Libin, Yang, Shenggao, and Gao, Ze, 2019. A New Empirical Model of NmF2
            Based on CHAMP, GRACE, and COSMIC Radio Occultation. Remote Sensing, 11(11):1386, doi:10.3390/rs11111386.
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- Liu, Zhen, Liu, Pang-Wei, Massoud, Elias, Farr, Tom G., Lundgren, Paul, and Famiglietti, James S., 2019. Monitoring Groundwater
            Change in California's Central Valley Using Sentinel-1 and GRACE Observations. Geosciences, 9(10):436, doi:10.3390/geosciences9100436.
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- Liu, Yonghe, Yang, Zongliang, Lin, Peirong, Zheng, Ziyan, and Xie, Shengjin, 2020. Comparison and evaluation of multiple land
            surface products for the water budget in the Yellow River Basin. Journal of Hydrology, 584:124534, doi:10.1016/j.jhydrol.2019.124534.
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- Liu, Xianfeng, Feng, Xiaoming, Ciais, Philippe, Fu, Bojie, Hu, Baoyi, and Sun, Zhangli, 2020. GRACE satellite-based drought
            index indicating increased impact of drought over major basins in China during 2002─2017. Agricultural and Forest Meteorology,
            291:108057, doi:10.1016/j.agrformet.2020.108057.
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- Liu, Xianfeng, Feng, Xiaoming, Ciais, Philippe, and Fu, Bojie, 2020. Widespread decline in terrestrial water storage and its
            link to teleconnections across Asia and eastern Europe. Hydrology and Earth System Sciences, 24(7):3663–3676,
            doi:10.5194/hess-24-3663-2020.
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- Liu, Mingming, Yuan, Yunbin, Huo, Xingliang, Li, Min, and Chai, Yanju, 2020. Simultaneous estimation of GPS P1-P2 differential
            code biases using low earth orbit satellites data from two different orbit heights. Journal of Geodesy, 94(12):121,
            doi:10.1007/s00190-020-01458-5.
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- Liu, Xiaomang, Liu, Changming, and Brutsaert, Wilfried, 2020. Mutual Consistency of Groundwater Storage Changes Derived From
            GRACE and From Baseflow Recessions in the Central Yangtze River Basin. Journal of Geophysical Research (Atmospheres),
            125(24):e31467, doi:10.1029/2019JD031467.
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- Liu, Bingshi, Zou, Xiancai, Yi, Shuang, Sneeuw, Nico, Cai, Jianqing, and Li, Jiancheng, 2021. Identifying and separating climate-
            and human-driven water storage anomalies using GRACE satellite data. Remote Sensing of Environment, 263:112559, doi:10.1016/j.rse.2021.112559.
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- Liu, Xingcai, Tang, Qiuhong, Hosseini-Moghari, Seyed-Mohammad, Shi, Xiaogang, Lo, Min-Hui, and Scanlon, Bridget, 2021. GRACE
            Satellites Enable Long-Lead Forecasts of Mountain Contributions to Streamflow in the Low-Flow Season. Remote Sensing,
            13(10):1993, doi:10.3390/rs13101993.
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- Liu, Xin, Hu, Litang, Sun, Kangning, Yang, Zhengqiu, Sun, Jianchong, and Yin, Wenjie, 2021. Improved Understanding of Groundwater
            Storage Changes under the Influence of River Basin Governance in Northwestern China Using GRACE Data. Remote Sensing,
            13(14):2672, doi:10.3390/rs13142672.
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- Liu, Jun, Jiang, Liguang, Zhang, Xingxing, Druce, Daniel, Kittel, Cecile M. M., Tøttrup, Christian, and Bauer-Gottwein,
            Peter, 2021. Impacts of water resources management on land water storage in the North China Plain: Insights from multi-mission
            earth observations. Journal of Hydrology, 603:126933, doi:10.1016/j.jhydrol.2021.126933.
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- Liu, Di, Mishra, Ashok K., Yu, Zhongbo, Lü, Haishen, and Li, Yajie, 2021. Support vector machine and data assimilation
            framework for Groundwater Level Forecasting using GRACE satellite data. Journal of Hydrology, 603:126929, doi:10.1016/j.jhydrol.2021.126929.
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- Liu, Kai, Li, Xueke, and Long, Xin, 2021. Trends in groundwater changes driven by precipitation and anthropogenic activities
            on the southeast side of the Hu Line. Environmental Research Letters, 16(9):094032, doi:10.1088/1748-9326/ac1ed8.
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- Liu, Huatong, Yuan, Xing, and Zhang, Miao, 2022. Unraveling human influence on evapotranspiration over East Asian monsoon
            river basins by using GRACE/GRACE-FO data and land surface models. Journal of Hydrology, 605:127349, doi:10.1016/j.jhydrol.2021.127349.
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- Liu, Wei and Sneeuw, Nico, 2021. Aliasing of ocean tides in satellite gravimetry: a two-step mechanism. Journal of Geodesy,
            95(12):134, doi:10.1007/s00190-021-01586-6.
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- Liu, Bingshi, Zou, Xiancai, Yi, Shuang, Sneeuw, Nico, Li, Jiancheng, and Cai, Jianqiang, 2022. Reconstructing GRACE-like time
            series of high mountain glacier mass anomalies. Remote Sensing of Environment, 280:113177, doi:10.1016/j.rse.2022.113177.
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- Liu, Mengzhu, Pei, Hongwei, and Shen, Yanjun, 2022. Evaluating dynamics of GRACE groundwater and its drought potential in
            Taihang Mountain Region, China. Journal of Hydrology, 612:128156, doi:10.1016/j.jhydrol.2022.128156.
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- Liu, Jiawei, Zhu, Guofeng, Zhao, Kailiang, Jiao, Yinying, Liu, Yuwei, Yang, Mingyue, Zhang, Wenhao, Qiu, Dongdong, Lin, Xinrui,
            and Ye, Linlin, 2022. GRACE Combined with WSD to Assess the Change in Drought Severity in Arid Asia. Remote Sensing,
            14(14):3454, doi:10.3390/rs14143454.
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- Liu, Kai, Zhang, Jianxin, and Wang, Ming, 2022. Drivers of Groundwater Change in China and Future Projections. Remote Sensing,
            14(19):4825, doi:10.3390/rs14194825.
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- Liu, Fang, Yu, Zhuxiao, Xu, Erqi, Li, Dajing, Zhang, Hongqi, and Qin, Yuanwei, 2021. Natural and semi-natural land dynamics
            under water resource change from 1990 to 2015 in the Tarim Basin, China. Environmental Research Letters, 16(8):085001,
            doi:10.1088/1748-9326/ac07d7.
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- Liu, Kai, Li, Xueke, Wang, Shudong, and Zhang, Xiaoyuan, 2023. Unrevealing past and future vegetation restoration on the Loess
            Plateau and its impact on terrestrial water storage. Journal of Hydrology, 617:129021, doi:10.1016/j.jhydrol.2022.129021.
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- Liu, Huiyuan, Xin, Xiaozhou, Su, Zhongbo, Zeng, Yijian, Lian, Ting, Li, Li, Yu, Shanshan, and Zhang, Hailong, 2023. Intercomparison
            and evaluation of ten global ET products at site and basin scales. Journal of Hydrology, 617:128887, doi:10.1016/j.jhydrol.2022.128887.
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- Liu, Pang-Wei, Famiglietti, James S., Purdy, Adam J., Adams, Kyra H., McEvoy, Avery L., Reager, John T., Bindlish, Rajat,
            Wiese, David N., David, Cédric H., and Rodell, Matthew, 2022. Groundwater depletion in California's Central Valley
            accelerates during megadrought. Nature Communications, 13:7825, doi:10.1038/s41467-022-35582-x.
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- Liu, Cao and Sun, WenKe, 2023. GRACE time-variable gravity and its application to geoscience: Quantitative analysis of relevant
            literature. Earth and Planetary Physics, 7(2):295–309, doi:10.26464/epp2023022.
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- Liu, Qing, Xu, Yuyue, Chen, Jianli, and Cheng, Xing, 2023. Multi-source satellite reveals the heterogeneity in water storage
            change over northwestern China in recent decades. Journal of Hydrology, 624:129953, doi:10.1016/j.jhydrol.2023.129953.
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- Liu, Yilin, Zhang, Yi, Zhao, Faqiang, Ding, Renwei, Zhao, Lihong, Niu, Yufen, Qu, Feifei, and Ling, Zilong, 2023. Multi-Source
            SAR-Based Surface Deformation Monitoring and Groundwater Relationship Analysis in the Yellow River Delta, China. Remote
            Sensing, 15(13):3290, doi:10.3390/rs15133290.
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- Liu, Sulan, Wu, Yunlong, Xu, Guodong, Cheng, Siyu, Zhong, Yulong, and Zhang, Yi, 2023. Characterizing the 2022 Extreme Drought
            Event over the Poyang Lake Basin Using Multiple Satellite Remote Sensing Observations and In Situ Data. Remote Sensing,
            15(21):5125, doi:10.3390/rs15215125.
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- Liu, Bailu, Zhou, Yan, Cui, Yaoping, Dong, Jinwei, Wang, Xinxin, Zhang, Qinghua, Zou, Zhenhua, and Xiao, Xiangming, 2024.
            Exacerbating water shortage induced by continuous expansion of surface artificial water bodies in the Yellow River Basin.
            Journal of Hydrology, 633:130979, doi:10.1016/j.jhydrol.2024.130979.
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- Liu, Xing, Tian, Kunjun, Chao, Nengfang, Guo, Bing, Zhao, Weijun, Li, Fupeng, Zhang, Bingbing, Wang, Zhengtao, and Han, Baomin,
            2024. Analysis of spatial and temporal variations of vegetation NPP and TWS in the Yangtze River Basin. Scientific Reports,
            14(1):24908, doi:10.1038/s41598-024-75447-5.
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- Liu, Yifu, Xu, Keke, Guo, Zengchang, Li, Sen, and Zhu, Yongzhen, 2024. Monitoring terrestrial water storage changes using
            GNSS vertical coordinate time series in Amazon River basin. Scientific Reports, 14(1):24077, doi:10.1038/s41598-024-74921-4.
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- Liu, W. and Miao, Y. X., 2011. The Analysis of the Southwestern Landwater Storage Based on GRACE Data. Acta Astronomica
            Sinica, 52(2):145–151.
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- Liu, Renli, Li, Jiancheng, Fok, Hok Sum, Shum, C. K., and Li, Zhao, 2014. Earth Surface Deformation in the North China
            Plain Detected by Joint Analysis of GRACE and GPS Data. Sensors, 14(10):19861–19876, doi:10.3390/s141019861.
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- Liu, Sijia, Kar, Swarnendu, Fardad, Makan, and Varshney, Pramod K., 2016. Optimized Sensor Collaboration for Estimation of
            Temporally Correlated Parameters. IEEE Transactions on Signal Processing, 64(24):6613–6626, doi:10.1109/TSP.2016.2612173.
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- Liu, Renli, Zou, Rong, Li, Jiancheng, Zhang, Caihong, Zhao, Bin, and Zhang, Yakun, 2018. Vertical Displacements Driven by
            Groundwater Storage Changes in the North China Plain Detected by GPS Observations. Remote Sensing, 10(2):259, doi:10.3390/rs10020259.
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- Liu, Yuan, Yue, Qimeng, Wang, Qianyang, Yu, Jingshan, Zheng, Yuexin, Yao, Xiaolei, and Xu, Shugao, 2021. A Framework for Actual
            Evapotranspiration Assessment and Projection Based on Meteorological, Vegetation and Hydrological Remote Sensing Products.
            Remote Sensing, 13(18):3643, doi:10.3390/rs13183643.
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- Liu, Bin, Yu, Wenkun, Dai, Wujiao, Xing, Xuemin, and Kuang, Cuilin, 2022. Estimation of Terrestrial Water Storage Variations
            in Sichuan-Yunnan Region from GPS Observations Using Independent Component Analysis. Remote Sensing, 14(2):282, doi:10.3390/rs14020282.
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- Liu, Shuhao, Yang, Fan, and Forootan, Ehsan, 2025. SAGEA: A toolbox for comprehensive error assessment of GRACE and GRACE-FO
            based mass changes. Computers and Geosciences, 196:105825, doi:10.1016/j.cageo.2024.105825.
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- Liu, Chuanqi, Zhang, Zhijie, Xu, Chi, and Zhang, Wanchang, 2024. Reconstructing Long-Term, High-Resolution Groundwater Storage
            Changes in the Songhua River Basin Using Supplemented GRACE and GRACE-FO Data. Remote Sensing, 16(23):4566, doi:10.3390/rs16234566.
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- Liu, Xiao, Guo, Jing, Li, Junqiang, Xu, Shengyi, and Zhao, Qile, 2025. Ambiguity Resolution Strategy for GPS/LEO Integrated
            Orbit Determination Based on Regional Ground Stations. Remote Sensing, 17(9):1590, doi:10.3390/rs17091590.
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- Liu, S. and Pail, R., 2025. The Glacier Changes in the Alps From the GRACE and GRACE Follow-On Missions (2002–2023).
            Journal of Geophysical Research (Earth Surface), 130(7):e2024JF008182, doi:10.1029/2024JF008182.
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- Liu, Jie, Kong, Sen, Jin, Shuanggen, Zhang, Yunlong, Liu, Xinqi, Nie, Shengkun, and Xu, Keke, 2025. Crustal stability and
            hazard assessment along the Xinjiang-Tibet Railway by GNSS and gravity data. Advances in Space Research, 76(2):718–733,
            doi:10.1016/j.asr.2025.05.021.
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- Liu, Dongzhu, Su, Xing, Xie, Xin, Zhou, Han, and Qu, Zhengjian, 2025. Study on the Design of Broadcast Ephemeris Parameters
            for Low Earth Orbit Satellites. Remote Sensing, 17(16):2894, doi:10.3390/rs17162894.
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- Liu, Guanqi, Ye, Fei, Chen, Xin, Chen, Qianqian, Lyu, Daqian, Jiao, Guoqiang, Ge, Yulong, Zhou, Peiyuan, Cao, Xinyun, Shen,
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            Technology, 36(8):086317, doi:10.1088/1361-6501/adfb9a.
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         - Livneh, B. and Lettenmaier, D. P., 2012. Multi-criteria parameter estimation for the Unified Land Model. Hydrology
            and Earth System Sciences, 16:3029–3048, doi:10.5194/hess-16-3029-2012.
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         - Llamedo, P., de la Torre, A., Alexander, P., Luna, D., Schmidt, T., and Wickert, J., 2009. A gravity wave analysis near to
            the Andes Range from GPS radio occultation data and mesoscale numerical simulations: Two case studies. Advances in Space
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         - Llovel, William, Becker, Mélanie, Cazenave, Anny, Crétaux, Jean-François, and Ramillien, Guillaume, 2010.
            Global land water storage change from GRACE over 2002-2009; Inference on sea level. Comptes Rendus Geoscience, 342(3):179–188,
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- Llovel, W., Guinehut, S., and Cazenave, A., 2010. Regional and interannual variability in sea level over 2002-2009 based on
            satellite altimetry, Argo float data and GRACE ocean mass. Ocean Dynamics, 60:1193–1204, doi:10.1007/s10236-010-0324-0.
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- Llovel, W., Becker, M., Cazenave, A., Jevrejeva, S., Alkama, R., Decharme, B., Douville, H., Ablain, M., and Beckley, B.,
            2011. Terrestrial waters and sea level variations on interannual time scale. Global and Planetary Change, 75:76–82,
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- Llovel, William, Purkey, S., Meyssignac, B., Blazquez, A., Kolodziejczyk, N., and Bamber, J., 2019. Global ocean freshening,
            ocean mass increase and global mean sea level rise over 2005-2015. Scientific Reports, 9:17717, doi:10.1038/s41598-019-54239-2.
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- Llovel, William, Balem, Kevin, Tajouri, Soumaia, and Hochet, Antoine, 2023. Cause of Substantial Global Mean Sea Level Rise
            Over 2014-2016. Geophysical Research Letters, 50(19):e2023GL104709, doi:10.1029/2023GL104709.
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            and CHAMP/GRACE perspective: some case studies. Journal of Geodynamics, 38:355–374, doi:10.1016/j.jog.2004.07.015.
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- Llubes, M., Lemoine, J.-M., and Rémy, F., 2007. Antarctica seasonal mass variations detected by GRACE. Earth and
            Planetary Science Letters, 260:127–136, doi:10.1016/j.epsl.2007.05.022.
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- Llubes, M., Seoane, L., Bruinsma, S., and Rémy, F., 2018. Crustal thickness of Antarctica estimated using data from
            gravimetric satellites. Solid Earth, 9:457–467, doi:10.5194/se-9-457-2018.
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         - Lo, M.-H., Famiglietti, J. S., Yeh, P. J.-F., and Syed, T. H., 2010. Improving parameter estimation and water
            table depth simulation in a land surface model using GRACE water storage and estimated base flow data. Water Resources
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            der Erde, Dissertations D 98, IGG Universität Bonn, Bonn.
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            from satellite laser ranging. Journal of Geodesy, 95(1):6, doi:10.1007/s00190-020-01460-x.
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            from SLR and DORIS. Advances in Space Research, 76(3):1281–1291, doi:10.1016/j.asr.2025.05.089.
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            M., 2007. Estimation of steric sea level variations from combined GRACE and Jason-1 data. Earth and Planetary Science Letters,
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         - Long, D., Scanlon, B. R., Longuevergne, L., Sun, A. Y., Fernando, D. N., and Save, H., 2013. GRACE satellite
            monitoring of large depletion in water storage in response to the 2011 drought in Texas. Geophysical Research Letters,
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            sensing, and GRACE satellites. Water Resources Research, 50:1131–1151, doi:10.1002/2013WR014581.
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- Long, D., Longuevergne, L., and Scanlon, B. R., 2015. Global analysis of approaches for deriving total water storage
            changes from GRACE satellites. Water Resources Research, 51:2574–2594, doi:10.1002/2014WR016853.
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- Long, D., Chen, X., Scanlon, B. R., Wada, Y., Hong, Y., Singh, V. P., Chen, Y., Wang, C., Han, Z., and Yang, W.,
            2016. Have GRACE satellites overestimated groundwater depletion in the Northwest India Aquifer?. Scientific Reports,
            6:24398, doi:10.1038/srep24398.
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            Evidence from GRACE and Sentinel-1 Data. Remote Sensing, 13(5):915, doi:10.3390/rs13050915.
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         - Matos, A., Blitzkow, D., Almeida, F., Costa, S., Campos, I., and Barbosa, A., 2012. Analysis of water level variations in
            Brazilian basins using GRACE. Journal of Geodetic Science, 2:76–87, doi:10.2478/v10156-011-0034-7.
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         - Matsuo, K. and Heki, K., 2010. Time-variable ice loss in Asian high mountains from satellite gravimetry. Earth and Planetary
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            by GRACE. Geophysical Journal International, 190:1495–1506, doi:10.1111/j.1365-246X.2012.05588.x.
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- Mayer-Gürr, T., 2007. Ein GRACE-Gravitationsfeld berechnet aus der Analyse kurzer Bahnbögen - Die Bonner Lösung
            ITG-Grace02s (in german). Zeitschrift für Vermessungswesen, 132:285–291.
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- Mayer-Gürr, T., 2006. Gravitationsfeldbestimmung aus der Analyse kurzer Bahnbögen am Beispiel der Satellitenmissionen
            CHAMP und GRACE (in german), Dissertation Univ. Bonn D 98, pp. 113, Univ. Bonn, Bonn.
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- Mayer-Gürr, T., Savcenko, R., Bosch, W., Daras, I., Flechtner, F., and Dahle, C., 2012. Ocean tides from satellite altimetry
            and GRACE. Journal of Geodynamics, 59:28–38, doi:10.1016/j.jog.2011.10.009.
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         - Mazloff, M. R. and Boening, C., 2016. Rapid variability of Antarctic Bottom Water transport into the Pacific Ocean inferred
            from GRACE. Geophysical Research Letters, 43:3822–3829, doi:10.1002/2016GL068474.
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            by Continental Hydrology Signals. Geophysical Research Letters, 51(10):e2024GL108394, doi:10.1029/2024GL108394.
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- Mehta, P. M., Thermospheric density and satellite drag modeling. Ph.D. Thesis, University of Kansas, 2013.
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- Mehta, P. M., Walker, A., Lawrence, E., Linares, R., Higdon, D., and Koller, J., 2014. Modeling satellite drag coefficients
            with response surfaces. Advances in Space Research, 54:1590–1607, doi:10.1016/j.asr.2014.06.033.
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            accelerometers on board the CHAMP and GRACE satellites. Space Weather, 15:558–576, doi:10.1002/2016SW001562.
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         - Mei, Changlin, Sun, Yu, and Li, Yang, 2025. Low-Degree Spherical Harmonic Coefficients for GRACE/GRACE-FO Gravity Field Models
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         - Melati, Maur\'ıcio D., Fleischmann, Ayan S., Fan, Fernand o M., Paiva, Rodrigo C. D., and Athayde, Gustavo B.,
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         - Melzer, B. A. and Subrahmanyam, B., 2017. Evaluation of GRACE Mascon Gravity Solution in Relation to Interannual Oceanic
            Water Mass Variations. IEEE Transactions on Geoscience and Remote Sensing, 55:907–914, doi:10.1109/TGRS.2016.2616760.
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         - Métivier, L., Greff-Lefftz, M., and Altamimi, Z., 2010. On secular geocenter motion: The impact of climate changes.
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- Meyer, U., Jäggi, A., and Beutler, G., 2012. Monthly gravity field solutions based on GRACE observations generated with
            the Celestial Mechanics Approach. Earth and Planetary Science Letters, 345:72–80, doi:10.1016/j.epsl.2012.06.026.
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- Meyer, U., Jäggi, A., Beutler, G., and Bock, H., 2015. The impact of common versus separate estimation of orbit parameters
            on GRACE gravity field solutions. Journal of Geodesy, 89:685–696, doi:10.1007/s00190-015-0807-3.
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- Meyer, U., Jäggi, A., Jean, Y., and Beutler, G., 2016. AIUB-RL02: an improved time-series of monthly gravity fields from
            GRACE data. Geophysical Journal International, 205:1196–1207, doi:10.1093/gji/ggw081.
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            2019. SLR, GRACE and Swarm Gravity Field Determination and Combination. Remote Sensing, 11(8):956, doi:10.3390/rs11080956.
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            fields on the normal equation level. Journal of Geodesy, 93(9):1645–1658, doi:10.1007/s00190-019-01274-6.
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- Meyer, U., Lasser, M., Dahle, C., Förste, C., Behzadpour, S., Koch, I., and Jäggi, A., 2023. Combined monthly GRACE-FO
            gravity fields for a Global Gravity-based Groundwater Product. Geophysical Journal International, 236(1):456–469,
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         - Meyrath, T., van Dam, T., Weigelt, M., and Cheng, M., 2013. An assessment of degree-2 Stokes coefficients from Earth rotation
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- Meyrath, T. and van Dam, T., 2016. A comparison of interannual hydrological polar motion excitation from GRACE and geodetic
            observations. Journal of Geodynamics, 99:1–9, doi:10.1016/j.jog.2016.03.011.
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- Meyrath, T., Rebischung, P., and van Dam, T., 2017. GRACE era variability in the Earth's oblateness: a comparison of estimates
            from six different sources. Geophysical Journal International, 208:1126–1138, doi:10.1093/gji/ggw441.
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- Meyrath, T., van Dam, T., Collilieux, X., and Rebischung, P., 2017. Seasonal low-degree changes in terrestrial water mass
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         - MIAO, Juan, REN, Tingling, GONG, Jiancun, LIU, Siqing, and LI, Zhitao, 2018. Analysis and Verification of Thermospheric Density
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         - Michailovsky, Claire I., Coerver, Bert, Mul, Marloes, and Jewitt, Graham, 2023. Investigating sources of variability in closing
            the terrestrial water balance with remote sensing. Hydrology and Earth System Sciences, 27(23):4335–4354, doi:10.5194/hess-27-4335-2023.
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         - Michalak, G. and König, R., 2010. Improvements for the CHAMP and GRACE Observation Model. In Flechtner, F., Gruber, T.,
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            F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors), System Earth via
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- Michalak, G., König, D., Neumayer, K.-H., and Dahle, C., 2014. Improvement in GPS Orbit Determination at GFZ. In Flechtner,
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         - Mielke, Christian A., Karegar, Makan A., Gerdener, Helena, and Kusche, Jürgen, 2025. GNSS Observations of the Land Uplift
            in South Africa: Implications for Water Mass Loss. Journal of Geophysical Research (Solid Earth), 130(4):e2024JB030350,
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         - Migliaccio, F., Reguzzoni, M., Sansò, F., Via, G. D., and Sabadini, R., 2008. Detecting geophysical signals in
            gravity satellite missions. Geophysical Journal International, 172:56–66, doi:10.1111/j.1365-246X.2007.03600.x.
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- Migliaccio, Federica, Reguzzoni, Mirko, Rosi, Gabriele, Braitenberg, Carla, Tino, Guglielmo Maria, Sorrentino, Fiodor, Mottini,
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            2023. The MOCAST+ Study on a Quantum Gradiometry Satellite Mission with Atomic Clocks. Surveys in Geophysics, 44(3):665–703,
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         - Mikhailov, V., Tikhotsky, S., Diament, M., Panet, I., and Ballu, V., 2004. Can tectonic processes be recovered from new gravity
            satellite data?. Earth and Planetary Science Letters, 228:281–297, doi:10.1016/j.epsl.2004.09.035.
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- Mikhailov, V. O., Tikhotsky, S. A., Diament, M., and Panet, I., 2005. Gravity variations of geodynamic origin: Recognition
            and study on the basis of modern satelltie gravity data. Izvestiya Physics of the Solid Earth, 41:193–205.
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- Mikhailov, A., Belehaki, A., Perrone, L., Zolesi, B., and Tsagouri, I., 2013. Retrieval of thermospheric parameters from routinely
            observed F2-layer Ne(h) profiles at the geomagnetic equator. Journal of Space Weather and Space Climate, 3(26):A260000,
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- Mikhailov, V. O., Panet, I., Hayn, M., Timoshkina, E. P., Bonvalot, S., Lyakhovsky, V., Diament, M., and Viron,
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- Mikhailov, V. O., Timoshkina, E. P., and Diament, M., 2016. A postseismic process in the area of the Simushir 11/2006
            Earthquake recovered by the GRACE data. Doklady Earth Sciences, 471:1188–1192, doi:10.1134/S1028334X16110179.
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- Mikhailov, V. O., Timoshkina, E. P., Kiseleva, E. A., Khairetdinov, S. A., Dmitriev, P. N., Kartashov,
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         - Milewski, Adam M., Thomas, Matthew B., Seyoum, Wondwosan M., and Rasmussen, Todd C., 2019. Spatial Downscaling of GRACE TWSA
            Data to Identify Spatiotemporal Groundwater Level Trends in the Upper Floridan Aquifer, Georgia, USA. Remote Sensing,
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         - Milyukov, V. K. and Yeh, H.-C., 2018. Next Generation Space Gravimetry: Scientific Tasks, Concepts, and Realization.
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            the Accuracy of Earth's Gravity Field Models. Soviet Journal of Experimental and Theoretical Physics, 134(4):511–522,
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         - Milzow, C., Krogh, P. E., and Bauer-Gottwein, P., 2011. Combining satellite radar altimetry, SAR surface soil moisture
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            wave in Bulgaria. Journal of Atmospheric and Solar-Terrestrial Physics, 165:1–9, doi:10.1016/j.jastp.2017.10.005.
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         - Miro, M. and Famiglietti, J., 2018. Downscaling GRACE Remote Sensing Datasets to High-Resolution Groundwater Storage Change
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         - Misfeldt, Malte, Müller, Vitali, Müller, Laura, Wegener, Henry, and Heinzel, Gerhard, 2023. Scale Factor Determination
            for the GRACE Follow-On Laser Ranging Interferometer Including Thermal Coupling. Remote Sensing, 15(3):570, doi:10.3390/rs15030570.
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            the GRACE follow-on laser ranging interferometer. Advances in Space Research, 72(6):2259–2269, doi:10.1016/j.asr.2023.06.038.
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- Misfeldt, Malte, Bekal, Pallavi, Müller, Vitali, and Heinzel, Gerhard, 2024. Corrigendum to ``Disturbances from single
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         - Mishra, V., Aadhar, S., Asoka, A., Pai, S., and Kumar, R., 2016. On the frequency of the 2015 monsoon season drought in the
            Indo-Gangetic Plain. Geophysical Research Letters, 43:12, doi:10.1002/2016GL071407.
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- Mishra, U. N. and Ghosh, J. K., 2017. Development of a Geoid Model by Geometric Method. Journal of The Institution
            of Engineers (India): Series A, 98:437–442, doi:10.1007/s40030-017-0250-y.
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- Mishra, Vimal, 2020. Long-term (1870-2018) drought reconstruction in context of surface water security in India. Journal
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            water scarcity. Environmental Research Letters, 16(5):054007, doi:10.1088/1748-9326/abf289.
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- Mitrovica, J. X., Gomez, N., Morrow, E., Hay, C., Latychev, K., and Tamisiea, M. E., 2011. On the robustness of
            predictions of sea level fingerprints. Geophysical Journal International, 187:729–742, doi:10.1111/j.1365-246X.2011.05090.x.
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         - Mitsui, Y. and Yamada, K., 2017. Possible correlation between annual gravity change and shallow background seismicity rate
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- Mohajerani, Yara, Velicogna, Isabella, and Rignot, Eric, 2019. Evaluation of Regional Climate Models Using Regionally Optimized
            GRACE Mascons in the Amery and Getz Ice Shelves Basins, Antarctica. Geophysical Research Letters, 46(23):13,883–13,891,
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            and GRACE-FO Harmonic Processing. Remote Sensing, 13(16):3134, doi:10.3390/rs13163134.
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         - Moon, J.-H. and Song, T. Y., 2013. Sea level and heat content changes in the western North Pacific. Journal of Geophysical
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         - Moore, P. and King, M. A., 2008. Antarctic ice mass balance estimates from GRACE: Tidal aliasing effects. Journal
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         - Pagiatakis, Spiros and Peidou, Athina, 2021. The Intriguing Structure of Stripes in GRACE Geopotential Models. Remote Sensing,
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- Pail, R., 2015. Observing Mass Transport to Understand Global Change and to Benefit Society: Science and User Needs - An
            international multi-disciplinary initiative for IUGG, Deutsche Geod. Kommission, Reihe B 320, pp. 122, Bayer. Akademie
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         - Pan, Y., Zhang, C., Gong, H., Yeh, P. J.-F., Shen, Y., Guo, Y., Huang, Z., and Li, X., 2017. Detection of human-induced
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- Pan, Y., Shen, W.-B., Shum, C. K., and Chen, R., 2018. Spatially varying surface seasonal oscillations and 3-D crustal
            deformation of the Tibetan Plateau derived from GPS and GRACE data. Earth and Planetary Science Letters, 502:12–22,
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- Pan, Zongpeng and Xiao, Yun, 2024. Data Quality Assessment of Gravity Recovery and Climate Experiment Follow-On Accelerometer.
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- Pan, Yuanjin, Shen, Wen-Bin, Ding, Hao, Hwang, Cheinway, Li, Jin, and Zhang, Tengxu, 2015. The Quasi-Biennial Vertical Oscillations
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- Pan, Yuanjin, Shen, Wen-Bin, Hwang, Cheinway, Liao, Chaoming, Zhang, Tengxu, and Zhang, Guoqing, 2016. Seasonal Mass Changes
            and Crustal Vertical Deformations Constrained by GPS and GRACE in Northeastern Tibet. Sensors, 16(8):1211, doi:10.3390/s16081211.
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- Pan, Qian, Xiong, Chao, Gao, ShunZu, Chen, Zhou, Smirnov, Artem, Xu, Chunyu, and Huang, Yuyang, 2025. Interpretable Machine
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         - Panahi, Milad and Behrangi, Ali, 2019. Comparative Analysis of Snowfall Accumulation and Gauge Undercatch Correction Factors
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            Human and Natural Conditions. Earth's Future, 10(4):e2021EF002513, doi:10.1029/2021EF002513.
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            variability: Bridging gaps in GRACE observations. Geophysical Research Letters, 43:9183–9191, doi:10.1002/2016GL070137.
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            handling air tides. Geophysical Research Letters, 29:6–1, doi:10.1029/2002GL016340.
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- Ponte, R. M., 2006. Oceanic Response to Surface Loading Effects Neglected in Volume-Conserving Models. Journal of
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            large-scale seasonal cycle in ocean bottom pressure. Geophysical Research Letters, 34:9603–+, doi:10.1029/2007GL029599.
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- Ponte, Rui M. and Schindelegger, Michael, 2022. Global Ocean Response to the 5-Day Rossby-Haurwitz Atmospheric Mode Seen by
            GRACE. Journal of Geophysical Research (Oceans), 127(5):e18302, doi:10.1029/2021JC018302.
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- Ponte, R. M., Zhao, M., and Schindelegger, M., 2024. How Well Do We Know the Seasonal Cycle in Ocean Bottom Pressure?.
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            high-frequency geophysical fluid dynamics in satellite gravimetry. Geophysical Journal International, 220(1):257–266,
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         - Puggaard, Anna, Hansen, Nicolaj, Schlager, Elke, Sørensen, Louise Sandberg, and Bjerregaard Simonsen, Sebastian, 2025.
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            parameters on the performance of next-generation gravity missions. Geophysical Journal International, 221(2):1190–1210,
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- Qian, Nijia, Chang, Guobin, Gao, Jingxiang, Shen, Wenbin, and Yan, Zhengwen, 2022. Adaptive DDK Filter for GRACE Time-Variable
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- Qiao, Baojin, Li, Na, Cui, Jiangpeng, Li, Dongfeng, Li, Mengyao, Xiang, Longwei, Borrelli, Pasquale, and Famiglietti, Jay,
            2024. Substantial Overestimation of Terrestrial Water Storage Loss in Headwater Basins on Earth's Third Pole. Geophysical
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- Qiao, Lei, Herrmann, Robert B., and Pan, Zaitao, 2013. Parameter Uncertainty Reduction for SWAT Using Grace, Streamflow, and
            Groundwater Table Data for Lower Missouri River Basin1. Journal of the American Water Resources Association, 49(2):343–358,
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         - Qiu, Keshan, You, Wei, Jiang, Zhongshan, and Tang, Miao, 2024. Tracking the water storage and runoff variations in the Paraná
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- Qu, Wei, Jin, Zehui, Zhang, Qin, Gao, Yuan, Zhang, Pufang, and Chen, Peinan, 2022. Estimation of Evapotranspiration in the
            Yellow River Basin from 2002 to 2020 Based on GRACE and GRACE Follow-On Observations. Remote Sensing, 14(3):730, doi:10.3390/rs14030730.
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- Qu, Wei, Zhang, Pufang, Chen, Peinan, Li, Jiuyuan, and Gao, Yuan, 2024. Spatiotemporal Variations and Sustainability Characteristics
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         - Quinn, K. J. and Ponte, R. M., 2008. Estimating weights for the use of time-dependent gravity recovery and climate
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- Quinn, K. J. and Ponte, R. M., 2010. Uncertainty in ocean mass trends from GRACE. Geophysical Journal International,
            181:762–768, doi:10.1111/j.1365-246X.2010.04508.x.
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- Quinn, K. J. and Ponte, R. M., 2012. High frequency barotropic ocean variability observed by GRACE and satellite
            altimetry. Geophysical Research Letters, 39:7603, doi:10.1029/2012GL051301.
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         - Rahimi, A., Li, J., Raoofian Naeeni, M., Shahrisvand, M., and Fatolazadeh, F., 2018. On the extraction of co-seismic signal
            for the Kuril Island earthquakes using GRACE observations. Geophysical Journal International, 215:346–362, doi:10.1093/gji/ggy287.
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- Rahimi, A. and Shahrisvand, M., 2017. Co-Seismic Gravity Gradient Changes of the 2006-2007 Great Earthquakes in the Central
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         - Rahimzadegan, Majid and Entezari, Seyyed Ardalan, 2019. Performance of the Gravity Recovery and Climate Experiment (GRACE)
            method in monitoring groundwater-level changes in local-scale study regions within Iran. Hydrogeology Journal, 27(7):2497–2509,
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            level budget assessment during the GRACE/Argo time period. Remote Sensing, 12(17):2837, doi:10.3390/rs12172837.
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         - Raju, Ashwani, Singh, Ramesh P., Kannojiya, Praveen Kumar, Patel, Abhinav, Singh, Saurabh, and Sinha, Mitali, 2024. Declining
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         - Ramillien, G., Frappart, F., Cazenave, A., and Güntner, A., 2005. Time variations of land water storage from an inversion
            of 2 years of GRACE geoids [rapid communication]. Earth and Planetary Science Letters, 235:283–301, doi:10.1016/j.epsl.2005.04.005.
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- Ramillien, G., Cazenave, A., and Brunau, O., 2004. Global time variations of hydrological signals from GRACE satellite gravimetry.
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            to sea level from GRACE geoid data over 2003-2006. Global and Planetary Change, 60:381–392, doi:10.1016/j.gloplacha.2007.04.002.
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- Ramillien, Guillaume, Seoane, Luc\'ıa, and Darrozes, José, 2021. An Innovative Slepian Approach to Invert GRACE
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- Ramillien, Guillaume, Frappart, Frédéric, and Seoane, Lucia, 2014. Application of the Regional Water Mass Variations
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         - Ran, J., Ditmar, P., Klees, R., and Farahani, H. H., 2018. Statistically optimal estimation of Greenland Ice Sheet mass
            variations from GRACE monthly solutions using an improved mascon approach. Journal of Geodesy, 92:299–319, doi:10.1007/s00190-017-1063-5.
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- Ran, J., Ditmar, P., and Klees, R., 2018. Optimal mascon geometry in estimating mass anomalies within Greenland from GRACE.
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- Ran, J., Vizcaino, M., Ditmar, P., van den Broeke, M. R., Moon, T., Steger, C. R., Enderlin, E. M., Wouters,
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            timing and magnitude of meltwater storage in the Greenland Ice Sheet. The Cryosphere, 12:2981–2999, doi:10.5194/tc-12-2981-2018.
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- Ran, Jiangjun, Tangdamrongsub, Natthachet, and Wan, Xiaoyun, 2021. The impact of error covariance matrix structure of GRACE's
            gravity solution on the mass flux estimates of Greenland ice sheet. Advances in Space Research, 67(1):163–178,
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- Ran, Jiangjun, Ditmar, Pavel, Liu, Lin, Xiao, Yun, Klees, Roland, and Tang, Xueyuan, 2021. Analysis and Mitigation of Biases
            in Greenland Ice Sheet Mass Balance Trend Estimates From GRACE Mascon Products. Journal of Geophysical Research (Solid
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- Rangelova, E. and Sideris, M. G., 2008. Contributions of terrestrial and GRACE data to the study of the secular geoid
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- Rangelova, E., Sideris, M. G., and Kim, J. W., 2012. On the capabilities of the multi-channel singular spectrum
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- Rangelova, E., Wal, W. V. D., and Sideris, M. G., 2012. How Significant is the Dynamic Component of the North
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         - Rao, Weilong and Sun, Wenke, 2021. Moho Interface Changes Beneath the Tibetan Plateau Based on GRACE Data. Journal of Geophysical
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- Rao, Weilong and Sun, Wenke, 2022. Uplift of the Tibetan Plateau: How to Accurately Compute the Hydrological Load Effect?.
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- Rao, WeiLong and Sun, WenKe, 2022. Runoff Variations in the Yangtze River Basin and Sub-basins based on GRACE, Hydrological
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- Reager, J. T. and Famiglietti, J. S., 2013. Characteristic mega-basin water storage behavior using GRACE. Water
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- Reager, J. T., Thomas, B. F., and Famiglietti, J. S., 2014. River basin flood potential inferred using GRACE
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- Reager, J., Thomas, A., Sproles, E., Rodell, M., Beaudoing, H., Li, B., and Famiglietti, J., 2015. Assimilation of GRACE Terrestrial
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- Reager, J. T., Gardner, A. S., Famiglietti, J. S., Wiese, D. N., Eicker, A., and Lo, M.-H., 2016. A decade
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- Reager, J. T., Terrestrial water storage across scales: Applications of the GRACE satellite mission for global hydrology.
            Ph.D. Thesis, University of California, Irvine, 2012.
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- Ren, D., Fu, R., Karoly, D. J., Leslie, L. M., Chen, J., and Wilson, C. R., 2010. A new ice sheet model validated
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- Ren, D., Leslie, L. M., and Lynch, M. J., 2013. Verification of model simulated mass balance, flow fields and tabular
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- Ren, L. and Schön, S., 2018. PPP-based Swarm kinematic orbit determination. Annales Geophysicae, 36:1227–1241,
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- Ren, Diandong and Hu, Aixue, 2021. The Role of Climate Warming in GRACE Measured Changes of Earth MOI during 2003-2017. Frontiers
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- Ren, Diandong, Leslie, Lance M., Huang, Ying, and Hu, Aixue, 2022. Correction to: Correction of GRACE measurements of the
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- Ren, Diandong, Leslie, Lance M., Huang, Ying, and Hu, Aixue, 2022. Correction of GRACE measurements of the Earth's moment
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- Ren, Dexin, Lei, Jiuhou, Wang, Wenbin, Burns, Alan, and Luan, Xiaoli, 2021. Observations and Simulations of the Peak Response
            Time of Thermospheric Mass Density to the 27 Day Solar EUV Flux Variation. Journal of Geophysical Research (Space Physics),
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- Ren, Wenhao, Gao, Yanyan, Qian, Hui, Ma, Yaoming, Su, Zhongbo, Ma, Weiqiang, Liu, Yu, and Xu, Panpan, 2023. Spatiotemporal
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- Ren, Ruqing, Nemoto, Tatsuya, Raghavan, Venkatesh, Song, Xianfeng, and Duan, Zheng, 2025. Analysis of Droughts and Floods
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         - Renshaw, Megan and Magruder, Lori A., 2025. Advancing Scalable Methods for Surface Water Monitoring: A Novel Integration of
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         - Renzetti, G., 2013. First results from LARES: An analysis. New Astronomy, 23:63–66, doi:10.1016/j.newast.2013.03.001.
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- Renzetti, G., 2012. Are higher degree even zonals really harmful for the LARES/LAGEOS frame-dragging experiment?. Canadian
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         - Retegui-Schiettekatte, Leire, Schumacher, Maike, Madsen, Henrik, and Forootan, Ehsan, 2025. Assessing daily GRACE Data Assimilation
            during flood events of the Brahmaputra River Basin. Science of the Total Environment, 975:179181, doi:10.1016/j.scitotenv.2025.179181.
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         - Reubelt, T., Sneeuw, N., and Iran Pour, S. et mult. al., 2014. Future Gravity Field Satellite Missions. In Flechtner, F.,
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- Reubelt, Tilo, Harmonische Gravitationsfeldanalyse aus GPS-vermessenen kinematischen Bahnen niedrig fliegender Satelliten
            vom Typ CHAMP, GRACE und GOCE mit einem hoch auflösenden BeschleunigungsansatzHarmonische Gravitationsfeldanalyse aus
            GPS-vermessenen kinematischen Bahnen niedrig fliegender Satelliten vom Typ CHAMP, GRACE und GOCE mit einem hoch auflösenden
            BeschleunigungsansatzHarmonic analysis of the Earth's gravitational field from kinematic orbits of a low Earth orbiting GPS
            tracked satellite of type CHAMP, GRACE and GOCE by means of an acceleration approach;. Ph.D. Thesis, University of Stuttgart,
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- Rexer, M. and Hirt, C., 2015. Spectral analysis of the Earth's topographic potential via 2D-DFT: a new data-based degree variance
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- Richey, A. S., Thomas, B. F., Lo, M.-H., Famiglietti, J. S., Swenson, S., and Rodell, M., 2015. Uncertainty
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         - Robertson, R., Flury, J., Bandikova, T., and Schilling, M., 2015. Highly physical penumbra solar radiation pressure modeling
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         - Robinson, Emma L. and Clark, Douglas B., 2020. Using Gravity Recovery and Climate Experiment data to derive corrections to
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- Rodell, M. and Famiglietti, J. S., 1999. Detectability of variations in continental water storage from satellite observations
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- Rodell, M. and Famiglietti, J. S., 2001. An analysis of terrestrial water storage variations in Illinois with implications
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- Rodell, M., 2002. The potential for satellite-based monitoring of groundwater storage changes using GRACE: the High Plains
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         - Rodr\'ıguez-Caderot, G., Lacy, M. C., Gil, A. J., and Blázquez, B., 2006. Comparing recent geopotential
            models in Andalusia (Southern Spain). Studia Geophysica et Geodaetica, 50(4):619–631, doi:10.1007/s11200-006-0039-3.
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         - Rodrigues, M., Foulon, B., Liorzou, F., and Touboul, P., 2003. Flight experience on CHAMP and GRACE with ultra-sensitive accelerometers
            and return for LISA. Classical and Quantum Gravity, 20:291–+, doi:10.1088/0264-9381/20/10/332.
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         - Roesset, P. J., A simulation study of the use of accelerometer data in the GRACE mission. Ph.D. Thesis, The University
            of Texas at Austin, 2003.
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         - Rogozhina, I., Global modeling of the effect of strong lateral viscosity variations on dynamic geoid and mantle flow velocities.
            Ph.D. Thesis, Technical University Berlin, Germany, 2008.
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         - Roh, Kyoung-Min, Luehr, Hermann, Park, Sang-Young, and Cho, Jung-Ho, 2009. The Effect of Equatorial Spread F on Relative Orbit
            Determination of GRACE Using Differenced GPS Observations. Journal of Astronomy and Space Sciences, 26(4):499–510,
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         - Romero, Abelardo, Richter, Andreas, Juarez, Amilcar, Suad Corbetta, Federico, Marderwald, Eric, Granovsky, Pedro, Döhne,
            Thorben, and Horwath, Martin, 2024. Grace Gravity Analysis Exploring Climatic Influences On Mass Changes In The Antarctic
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            doi:10.5194/isprs-archives-XLVIII-2-W6-2024-51-2024.
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         - Root, B. C., Tarasov, L., and Wal, W., 2015. GRACE gravity observations constrain Weichselian ice thickness in the Barents
            Sea. Geophysical Research Letters, 42:3313–3320, doi:10.1002/2015GL063769.
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         - Rosenberg, E. A., Clark, E. A., Steinemann, A. C., and Lettenmaier, D. P., 2013. On the contribution of
            groundwater storage to interannual streamflow anomalies in the Colorado River basin. Hydrology and Earth System Sciences,
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         - Ross, M. P., Hagedorn, C. A., Shaw, E. A., Lockwood, A. L., Iritani, B. M., Lee, J. G., Venkateswara,
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         - Rossi, L., Reguzzoni, M., Koç, Ö., Rosi, G., and Migliaccio, F., 2023. Assessment of gravity field recovery from
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         - Rovira-Navarro, Marc, van der Wal, Wouter, Barletta, Valentina R., Root, Bart C., and Sandberg Sørensen, Louise, 2020.
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         - Rowlands, D. D., Luthcke, S. B., Klosko, S. M., Lemoine, F. G. R., Chinn, D. S., McCarthy, J. J.,
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            concentrations versus Stokes coefficients. Journal of Geophysical Research (Solid Earth), 115(B14):1403–+, doi:10.1029/2009JB006546.
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         - Roy, K. and Peltier, W. R., 2011. GRACE era secular trends in Earth rotation parameters: A global scale impact of the
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         - Royston, Sam, Vishwakarma, Bramha Dutt, Westaway, Richard, Rougier, Jonathan, Sha, Zhe, and Bamber, Jonathan, 2020. Can We
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         - Ruan, Haibing and Lei, Jiuhou, 2019. Quantifying the Impact of Satellite Sampling on the Dynamic Modeling of the Upper Thermosphere.
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         - Rudenko, S., Dettmering, D., Esselborn, S., Schöne, T., Förste, C., Lemoine, J.-M., Ablain, M., Alexandre, D., and
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- Rudenko, S., Dettmering, D., Esselborn, S., Fagiolini, E., and Schöne, T., 2016. Impact of Atmospheric and Oceanic De-aliasing
            Level-1B (AOD1B) products on precise orbits of altimetry satellites and altimetry results. Geophysical Journal International,
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         - Ruiz-Etcheverry, Laura A. and Saraceno, Martin, 2020. Sea Level Trend and Fronts in the South Atlantic Ocean. Geosciences,
            10(6):218, doi:10.3390/geosciences10060218.
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         - Rülke, A., Liebsch, G., Sacher, M., Schäfer, U., Schirmer, U., and Ihde, J., 2012. Unification of European height
            system realizations. Journal of Geodetic Science, 2:343–354, doi:10.2478/v10156-011-0048-1.
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         - Rummel, R., 2004. Geoid and Gravity in Earth Sciences   An Overview. Earth Moon and Planets, 94:3–11, doi:10.1007/s11038-005-3755-8.
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- Rummel, R., 2003. How to Climb the Gravity Wall. Space Science Reviews, 108:1–14, doi:10.1023/A:1026206308590.
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- Rummel, R., Balmino, G., Johannessen, J., Visser, P., and Woodworth, P., 2002. Dedicated gravity field missions—principles
            and aims. Journal of Geodynamics, 33(1):3–20, doi:10.1016/S0264-3707(01)00050-3.
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- Rummel, R., Horwath, M., Yi, W., Albertella, A., Bosch, W., and Haagmans, R., 2011. GOCE, Satellite Gravimetry and Antarctic
            Mass Transports. Surveys in Geophysics, 32:643–657, doi:10.1007/s10712-011-9115-5.
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- Rummel, R., 2012. Height unification using GOCE. Journal of Geodetic Science, 2:355–362, doi:10.2478/v10156-011-0047-2.
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            a regularized sliding window mascon product from GRACE. Journal of Geophysical Research (Solid Earth), 121:4014–4030,
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            the phase-tracking limits of the GRACE follow-on flight laser. Physical Review Applied, 24(1):014015, doi:10.1103/q62l-3684.
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- Sambridge, Callum S. and McKenzie, Kirk, 2025. Dual-quadrature phasemeter for space-based interferometry. Physical Review
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         - Sanchez, D. M., Prado, A. F. B. A., and Yokoyama, T., 2014. On the effects of each term of the geopotential
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         - Sánchez, L., Čunderl\'ık, R., Dayoub, N., Mikula, K., Minarechová, Z., Š\'ıma, Z., Vatrt,
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         - Sanchez Lofficial, Ana, Métivier, Laurent, Fleitout, Luce, Chanard, Kristel, Greff-Lefftz, Marianne, de La Serve, Maylis,
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         - Sang, J., Bennett, J. C., and Smith, C. H., 2013. Estimation of ballistic coefficients of low altitude debris objects
            from historical two line elements. Advances in Space Research, 52:117–124, doi:10.1016/j.asr.2013.03.010.
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         - Sanjuan, Josep, Gohlke, Martin, Rasch, Stefan, Abich, Klaus, Görth, Alexander, Heinzel, Gerhard, and Braxmaier, Claus,
            2015. Interspacecraft link simulator for the laser ranging interferometer onboard GRACE Follow-On. Applied Optics,
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         - Saria, E. E., Contribution to defining a geodetic reference frame for Africa (AFREF): Geodynamics implications. Ph.D.
            Thesis, Purdue University, 2013.
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         - Sarkar, Tandrila, Karunakalage, Anuradha, Kannaujiya, Suresh, and Chaganti, Charan, 2022. Quantification of groundwater storage
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         - Sasaki, O., Kim, H., Hirabayashi, Y., Yamada, H. G., and Kanae, S., 2012. Estimation of Glacier Mass Changes in Himalaya
            Alpine Region Inferred from GRACE Satellite Gravimetry (Japanese). Journal of Japan Society of Civil Engineers, Ser. B1
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         - Sasgen, I., Martinec, Z., and Fleming, K., 2006. Wiener Optimal Filtering of GRACE Data. Studia Geophys. Geod., 50:499–508,
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- Sasgen, I., Martinec, Z., and Fleming, K., 2007. Wiener optimal combination and evaluation of the Gravity Recovery and Climate
            Experiment (GRACE) gravity fields over Antarctica. Journal of Geophysical Research (Solid Earth), 112(B11):4401–+,
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- Sasgen, I., Martinec, Z., and Fleming, K., 2007. Regional ice-mass changes and glacial-isostatic adjustment in Antarctica
            from GRACE. Earth and Planetary Science Letters, 264:391–401, doi:10.1016/j.epsl.2007.09.029.
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- Sasgen, I., Dobslaw, H., Martinec, Z., and Thomas, M., 2010. Satellite gravimetry observation of Antarctic snow accumulation
            related to ENSO. Earth and Planetary Science Letters, 299:352–358, doi:10.1016/j.epsl.2010.09.015.
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- Sasgen, I., Martinec, Z., and Bamber, J., 2010. Combined GRACE and InSAR estimate of West Antarctic ice mass loss. Journal
            of Geophysical Research (Earth Surface), 115(F14):4010–+, doi:10.1029/2009JF001525.
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- Sasgen, I., Present-day ice-mass change and glacial-isostatic adjustment in the polar regions from satellite gravimetry and
            geophysical modelling. Ph.D. Thesis, Free University of Berlin, Germany, 2009.
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- Sasgen, I., van den Broeke, M., Bamber, J. L., Rignot, E., Sørensen, L. S., Wouters, B., Martinec, Z., Velicogna,
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- Sasgen, I., Klemann, V., and Martinec, Z., 2012. Towards the inversion of GRACE gravity fields for present-day ice-mass changes
            and glacial-isostatic adjustment in North America and Greenland. Journal of Geodynamics, 59:49–63, doi:10.1016/j.jog.2012.03.004.
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- Sasgen, I., Konrad, H., Ivins, E. R., Van den Broeke, M. R., Bamber, J. L., Martinec, Z., and Klemann, V.,
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            estimate of glacial-isostatic adjustment based on GPS uplift rates. The Cryosphere, 7:1499–1512, doi:10.5194/tc-7-1499-2013.
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- Sasgen, I., Martín-Español, A., Horvath, A., Klemann, V., Petrie, E. J., Wouters, B., Horwath, M., Pail,
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- Sasgen, I., Martín-Español, A., Horvath, A., Klemann, V., Petrie, E. J., Wouters, B., Horwath, M., Pail,
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            GPS and viscoelastic modeling data for the joint inversion for glacial isostatic adjustment in Antarctica (ESA STSE Project
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- Sasgen, Ingo, Wouters, Bert, Gardner, Alex S., King, Michalea D., Tedesco, Marco, Landerer, Felix W., Dahle, Christoph, Save,
            Himanshu, and Fettweis, Xavier, 2020. Return to rapid ice loss in Greenland and record loss in 2019 detected by the GRACE-FO
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- Sasgen, Ingo, Salles, Annette, Wegmann, Martin, Wouters, Bert, Fettweis, Xavier, Noël, Brice P. Y., and Beck, Christoph,
            2022. Arctic glaciers record wavier circumpolar winds. Nature Climate Change, 12(3):249–255, doi:10.1038/s41558-021-01275-4.
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- Sasgen, Ingo, Steinhoefel, Grit, Kasprzyk, Caroline, Matthes, Heidrun, Westermann, Sebastian, Boike, Julia, and Grosse, Guido,
            2024. Atmosphere circulation patterns synchronize pan-Arctic glacier melt and permafrost thaw. Communications Earth and
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- Sasgen, Ingo, Konrad, Hannes, Helm, Veit, and Grosfeld, Klaus, 2019. High-Resolution Mass Trends of the Antarctic Ice Sheet
            through a Spectral Combination of Satellite Gravimetry and Radar Altimetry Observations. Remote Sensing, 11(2):144,
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         - Sastry, R. G. and Sonker, M. K., 2017. 3-D GRACE gravity model for the 2011 Japan earthquake. Journal of Earth
            System Science, 126:4, doi:10.1007/s12040-016-0781-z.
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- Sastry, Rambhatla G. and Sonker, Mahendra Kumar, 2019. Co-seismic grace gravity-based 11-layered 3-D thrust fault model for
            the Sumatra earthquake 2004. Journal of Earth System Science, 128(2):27, doi:10.1007/s12040-018-1050-0.
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         - Satgé, Frédéric, Hussain, Yawar, Xavier, Alvaro, Zolá, Ramiro Pillco, Salles, Leandro, Timouk,
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         - Satish Kumar, K., Venkata Rathnam, E., and Sridhar, Venkataramana, 2021. Tracking seasonal and monthly drought with GRACE-based
            terrestrial water storage assessments over major river basins in South India. Science of the Total Environment, 763:142994,
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- Satish Kumar, K., AnandRaj, P., Sreelatha, K., and Sridhar, Venkataramana, 2023. Reconstruction of GRACE terrestrial water
            storage anomalies using Multi-Layer Perceptrons for South Indian River basins. Science of the Total Environment, 857:159289,
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- Satish Kumar, Kuruva, AnandRaj, Pallakury, Sreelatha, Koppala, Bisht, Deepak Singh, and Sridhar, Venkataramana, 2021. Monthly
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         - Satizábal-Alarcón, Diego Alejandro, Suhogusoff, Alexandra, and Ferrari, Luiz Carlos, 2024. Characterization
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         - Save, H. V., Using regularization for error reduction in GRACE gravity estimation. Ph.D. Thesis, The University of Texas
            at Austin, 2009.
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- Save, H., Bettadpur, S., and Tapley, B. D., 2012. Reducing errors in the GRACE gravity solutions using regularization.
            Journal of Geodesy, 86:695–711, doi:10.1007/s00190-012-0548-5.
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- Save, H., Bettadpur, S., and Tapley, B. D., 2016. High-resolution CSR GRACE RL05 mascons. Journal of Geophysical Research
            (Solid Earth), 121:7547–7569, doi:10.1002/2016JB013007.
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         - Saynisch, J., Bergmann-Wolf, I., and Thomas, M., 2015. Assimilation of GRACE-derived oceanic mass distributions with a global
            ocean circulation model. Journal of Geodesy, 89:121–139, doi:10.1007/s00190-014-0766-0.
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         - Scanlon, B. R., Longuevergne, L., and Long, D., 2012. Ground referencing GRACE satellite estimates of groundwater storage
            changes in the California Central Valley, USA. Water Resources Research, 48:4520, doi:10.1029/2011WR011312.
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- Scanlon, B. R., Faunt, C. C., Longuevergne, L., Reedy, R. C., Alley, W. M., McGuire, V. L., and McMahon,
            P. B., 2012. Groundwater depletion and sustainability of irrigation in the US High Plains and Central Valley. PNAS,
            109:9320–9325, doi:10.1073/pnas.1200311109.
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- Scanlon, B. R., Zhang, Z., Reedy, R. C., Pool, D. R., Save, H., Long, D., Chen, J., Wolock, D. M., Conway,
            B. D., and Winester, D., 2015. Hydrologic implications of GRACE satellite data in the Colorado River Basin. Water
            Resources Research, 51:9891–9903, doi:10.1002/2015WR018090.
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- Scanlon, B. R., Zhang, Z., Save, H., Wiese, D. N., Landerer, F. W., Long, D., Longuevergne, L., and Chen, J.,
            2016. Global evaluation of new GRACE mascon products for hydrologic applications. Water Resources Research, 52:9412–9429,
            doi:10.1002/2016WR019494.
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- Scanlon, B. R., Zhang, Z., Rateb, A., Sun, A., Wiese, D., Save, H., Beaudoing, H., Lo, M. H., Müller-Schmied,
            H., and Döll, P., 2019. Tracking Seasonal Fluctuations in Land Water Storage Using Global Models and GRACE Satellites.
            Geophysical Research Letters, 46(10):5254–5264, doi:10.1029/2018GL081836.
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- Scanlon, Bridget R., Zhang, Zizhan, Save, Himanshu, Sun, Alexander Y., Müller Schmied, Hannes, van Beek, Ludovicus P. H.,
            Wiese, David N., Wada, Yoshihide, Long, Di, Reedy, Robert C., Longuevergne, Laurent, Döll, Petra, and Bierkens, Marc
            F. P., 2018. Global models underestimate large decadal declining and rising water storage trends relative to GRACE satellite
            data. Proceedings of the National Academy of Science, 115(6):E1080–E1089, doi:10.1073/pnas.1704665115.
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- Scanlon, Bridget R., Rateb, Ashraf, Pool, Donald R., Sanford, Ward, Save, Himanshu, Sun, Alexander, Long, Di, and Fuchs, Brian,
            2021. Effects of climate and irrigation on GRACE-based estimates of water storage changes in major US aquifers. Environmental
            Research Letters, 16(9):094009, doi:10.1088/1748-9326/ac16ff.
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- Scanlon, Bridget R., Rateb, Ashraf, Anyamba, Assaf, Kebede, Seifu, MacDonald, Alan M., Shamsudduha, Mohammad, Small, Jennifer,
            Sun, Alexander, Taylor, Richard G., and Xie, Hua, 2022. Linkages between GRACE water storage, hydrologic extremes, and climate
            teleconnections in major African aquifers. Environmental Research Letters, 17(1):014046, doi:10.1088/1748-9326/ac3bfc.
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- Scanlon, Bridget R., Fakhreddine, Sarah, Rateb, Ashraf, de Graaf, Inge, Famiglietti, Jay, Gleeson, Tom, Grafton, R. Quentin,
            Jobbagy, Esteban, Kebede, Seifu, Kolusu, Seshagiri Rao, Konikow, Leonard F., Long, Di, Mekonnen, Mesfin, Schmied, Hannes Mueller,
            Mukherjee, Abhijit, MacDonald, Alan, Reedy, Robert C., Shamsudduha, Mohammad, Simmons, Craig T., Sun, Alex, Taylor, Richard
            G., Villholth, Karen G., Vörösmarty, Charles J., and Zheng, Chunmiao, 2023. Global water resources and the role
            of groundwater in a resilient water future. Nature Reviews Earth and Environment, 4(2):87–101, doi:10.1038/s43017-022-00378-6.
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- Scanlon, Bridget R., Pool, Donald R., Rateb, Ashraf, Conway, Brian, Sorensen, Kathryn, Udall, Bradley, and Reedy, Robert C.,
            2025. Multidecadal drought impacts on the Lower Colorado Basin with implications for future management. Communications
            Earth and Environment, 6(1):214, doi:10.1038/s43247-025-02149-9.
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         - Schaer, S., Villiger, A., Arnold, D., Dach, R., Prange, L., and Jäggi, A., 2021. The CODE ambiguity-fixed clock and phase
            bias analysis products: generation, properties, and performance. Journal of Geodesy, 95(7):81, doi:10.1007/s00190-021-01521-9.
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         - Schaller, T., Scheinert, M., Barthelmes, F., and Förste, C., 2019. Inversion of GEOHALO aerogravimetry to infer ocean
            bottom topography: application to the Tyrrhenian, Ionian and Adriatic seas. Geophysical Journal International, 216(2):840–850,
            doi:10.1093/gji/ggy456.
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         - Schefels, Clemens, Schlag, Leonard, and Helmsauer, Kathrin, 2025. Synthetic satellite telemetry data for machine learning.
            CEAS Space Journal, 17(5):863–875, doi:10.1007/s12567-024-00589-1.
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         - Scheinert, M., Ferraccioli, F., Schwabe, J., Bell, R., Studinger, M., Damaske, D., Jokat, W., Aleshkova, N., Jordan, T., Leitchenkov,
            G., Blankenship, D. D., Damiani, T. M., Young, D., Cochran, J. R., and Richter, T. D., 2016. New Antarctic
            gravity anomaly grid for enhanced geodetic and geophysical studies in Antarctica. Geophysical Research Letters, 43:600–610,
            doi:10.1002/2015GL067439.
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         - Scheliga, Ann, Girotto, Manuela, and Gerlein-Safdi, Cynthia, 2025. Anthropogenic processes and sea-level rise contributions
            with data assimilation of GRACE and GRACE-FO terrestrial water storage. Journal of Hydrology, 663:134048, doi:10.1016/j.jhydrol.2025.134048.
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         - Scherllin-Pirscher, B., Steiner, A. K., Kirchengast, G., Kuo, Y.-H., and Foelsche, U., 2011. Empirical analysis and modeling
            of errors of atmospheric profiles from GPS radio occultation. Atmospheric Measurement Techniques, 4:1875–1890,
            doi:10.5194/amt-4-1875-2011.
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         - Schindelegger, Michael, Harker, Alexander A., Ponte, Rui M., Dobslaw, Henryk, and Salstein, David A., 2021. Convergence of
            Daily GRACE Solutions and Models of Submonthly Ocean Bottom Pressure Variability. Journal of Geophysical Research (Oceans),
            126(2):e17031, doi:10.1029/2020JC017031.
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         - Schlaak, Marius and Pail, Roland, 2025. Resolving climate-related mass transport trends: a parameter model comparison using
            closed-loop simulations of current and future satellite gravity missions. Earth, Planets and Space, 77(1):97, doi:10.1186/s40623-025-02239-0.
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         - Schlegel, N.-J., Wiese, D. N., Larour, E. Y., Watkins, M. M., Box, J. E., Fettweis, X., and van den Broeke,
            M. R., 2016. Application of GRACE to the assessment of model-based estimates of monthly Greenland Ice Sheet mass balance
            (2003-2012). The Cryosphere, 10:1965–1989, doi:10.5194/tc-10-1965-2016.
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         - Schlicht, Anja, 2022. GRACE Accelerometers Sensitive to Ionosphere Plasma Waves: Similarities between Twangs and Whistlers.
            Geosciences, 12(6):228, doi:10.3390/geosciences12060228.
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         - Schmeer, M., Schmidt, M., Bosch, W., and Seitz, F., 2012. Separation of mass signals within GRACE monthly gravity field models
            by means of empirical orthogonal functions. Journal of Geodynamics, 59:124–132, doi:10.1016/j.jog.2012.03.001.
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         - Schmidt, R., Schwintzer, P., Flechtner, F., Reigber, C., Güntner, A., Döll, P., Ramillien, G., Cazenave, A., Petrovic,
            S., Jochmann, H., and Wünsch, J., 2006. GRACE observations of changes in continental water storage. Global and Planetary
            Change, 50:112–126, doi:10.1016/j.gloplacha.2004.11.018.
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- Schmidt, R., Flechtner, F., Meyer, U., Reigber, Chr., Barthelmes, F., Förste, Chr., Stubenvoll, R., König, R., Neumayer,
            K.-H., and Zhu, S., 2006. Static and Time-Variable Gravity from GRACE Mission Data. In Flury, J., Rummel, R., Reigber, C.,
            Rothacher, M., Boedecker, G., and Schreiber, U. (editors), Observation of the Earth System from Space, ISBN 3-540-29520-8,
            pp. 115–129, Springer, Berlin.
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- Schmidt, M., Han, S.-C., Kusche, J., Sanchez, L., and Shum, C. K., 2006. Regional high-resolution spatiotemporal gravity
            modeling from GRACE data using spherical wavelets. Geophysical Research Letters, 33:8403–+, doi:10.1029/2005GL025509.
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- Schmidt, R., Flechtner, F., König, R., Meyer, U., Neumayer, K.-H., Reigber, Chr., Rothacher, M., Petrovic, S., Zhu, S.
            Y., and Güntner, A., 2007. GRACE Time-Variable Gravity Accuracy Assessment. In Tregoning, P. and Rizos, Chr. (editors),
            Dynamic Planet, IAG Symposium 130, ISBN 3-540-49349-5, pp. 237–243, Springer, Berlin.
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- Schmidt, R., Petrovic, S., Güntner, A., Barthelmes, F., Wünsch, J., and Kusche, J., 2008. Periodic components of
            water storage changes from GRACE and global hydrology models. Journal of Geophysical Research (Solid Earth), 113(B12):8419–+,
            doi:10.1029/2007JB005363.
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- Schmidt, M., Fengler, M., Mayer-Gürr, T., Eicker, A., Kusche, J., Sánchez, L., and Han, S.-C., 2007. Regional
            gravity modeling in terms of spherical base functions. Journal of Geodesy, 81:17–38, doi:10.1007/s00190-006-0101-5.
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- Schmidt, T., Wickert, J., Beyerle, G., and Heise, S., 2008. Global tropopause height trends estimated from GPS radio occultation
            data. Geophysical Research Letters, 35:11806–+, doi:10.1029/2008GL034012.
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- Schmidt, M., Seitz, F., and Shum, C. K., 2008. Regional four-dimensional hydrological mass variations from GRACE, atmospheric
            flux convergence, and river gauge data. Journal of Geophysical Research (Solid Earth), 113(B12):10402–+, doi:10.1029/2008JB005575.
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- Schmidt, R., Flechtner, F., Meyer, U., Neumayer, K.-H., Dahle, C., König, R., and Kusche, J., 2008. Hydrological Signals
            Observed by the GRACE Satellites. Surveys in Geophysics, 29:319–334, doi:10.1007/s10712-008-9033-3.
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- Schmidt, T., de la Torre, A., and Wickert, J., 2008. Global gravity wave activity in the tropopause region from CHAMP radio
            occultation data. Geophysical Research Letters, 35:16807–+, doi:10.1029/2008GL034986.
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- Schmidt, T., Wickert, J., Beyerle, G., and Reigber, C., 2004. Tropical tropopause parameters derived from GPS radio occultation
            measurements with CHAMP. Journal of Geophysical Research (Atmospheres), 109(D18):13105–+, doi:10.1029/2004JD004566.
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- Schmidt, T., Wickert, J., and Michalak, G., 2010. The operational processing system for GPS radio occultation data from CHAMP
            and GRACE. In Flechtner, F., Gruber, T., Güntner, A., Mandea, M., Rothacher, M., Schöne, T., and Wickert, J. (editors),
            System Earth via Geodetic-Geophysical Space Techniques, pp. 455–460, Springer, Berlin, Heidelberg.
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- Schmidt, T., Wickert, J., and Haser, A., 2010. Variability of the upper troposphere and lower stratosphere observed with GPS
            radio occultation bending angles and temperatures. Advances in Space Research, 46:150–161, doi:10.1016/j.asr.2010.01.021.
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- Schmidt, T., Cammas, J.-P., Smit, H. G. J., Heise, S., Wickert, J., and Haser, A., 2010. Observational characteristics
            of the tropopause inversion layer derived from CHAMP/GRACE radio occultations and MOZAIC aircraft data. Journal of Geophysical
            Research (Atmospheres), 115(D14):24304–+, doi:10.1029/2010JD014284.
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- Schmidt, Amanda H., Lüdtke, Stefan, and Andermann, Christoff, 2020. Multiple measures of monsoon-controlled water storage
            in Asia. Earth and Planetary Science Letters, 546:116415, doi:10.1016/j.epsl.2020.116415.
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- Schmidt, T., Heise, S., Wickert, J., Beyerle, G., and Reigber, C., 2005. GPS radio occultation with CHAMP and SAC-C: global
            monitoring of thermal tropopause parameters. Atmospheric Chemistry & Physics, 5(6):1473–1488, doi:10.5194/acp-5-1473-2005.
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         - Schneck, Rainer, Gayler, Veronika, Nabel, Julia E. M. S., Raddatz, Thomas, Reick, Christian H., and Schnur, Reiner,
            2022. Assessment of JSBACHv4.30 as a land component of ICON-ESM-V1 in comparison to its predecessor JSBACHv3.2 of MPI-ESM1.2.
            Geoscientific Model Development, 15(22):8581–8611, doi:10.5194/gmd-15-8581-2022.
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         - Schnitzer, S., Seitz, F., Eicker, A., Güntner, A., Wattenbach, M., and Menzel, A., 2013. Estimation of soil loss by water
            erosion in the Chinese Loess Plateau using Universal Soil Loss Equation and GRACE. Geophysical Journal International,
            193:1283–1290, doi:10.1093/gji/ggt023.
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         - Schotman, H. H. A. and Vermeersen, L. L. A., 2005. Sensitivity of glacial isostatic adjustment models
            with shallow low-viscosity earth layers to the ice-load history in relation to the performance of GOCE and GRACE. Earth
            and Planetary Science Letters, 236:828–844, doi:10.1016/j.epsl.2005.04.008.
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         - Schoups, Gerrit and Nasseri, Mohsen, 2021. GRACEfully Closing the Water Balance: A Data-Driven Probabilistic Approach Applied
            to River Basins in Iran. Water Resources Research, 57(6):e29071, doi:10.1029/2020WR029071.
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         - Schrama, E. J. O., 2003. Error Characteristics Estimated from Champ, GRACE and GOCE Derived Geoids and from Satellite
            Altimetry Derived Mean Dynamic Topography. Space Science Reviews, 108:179–193, doi:10.1023/A:1026154720402.
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- Schrama, E. J. O., 2004. Impact of Limitations in Geophysical Background Models on Follow-on Gravity Missions. Earth
            Moon and Planets, 94:143–163, doi:10.1007/s11038-004-5785-z.
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- Schrama, E. J. O., Wouters, B., and Lavallée, D. A., 2007. Signal and noise in Gravity Recovery and
            Climate Experiment (GRACE) observed surface mass variations. Journal of Geophysical Research (Solid Earth), 112(B11):8407–+,
            doi:10.1029/2006JB004882.
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- Schrama, E. J. O. and Visser, P. N. A. M., 2007. Accuracy assessment of the monthly GRACE geoids
            based upon a simulation. Journal of Geodesy, 81:67–80, doi:10.1007/s00190-006-0085-1.
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- Schrama, E. J. O. and Wouters, B., 2011. Revisiting Greenland ice sheet mass loss observed by GRACE. Journal
            of Geophysical Research (Solid Earth), 116(B15):2407–+, doi:10.1029/2009JB006847.
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- Schrama, E., Wouters, B., and Vermeersen, B., 2011. Present Day Regional Mass Loss of Greenland Observed with Satellite Gravimetry.
            Surveys in Geophysics, 32:377–385, doi:10.1007/s10712-011-9113-7.
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- Schrama, E. J. O., Wouters, B., and Rietbroek, R., 2014. A mascon approach to assess ice sheet and glacier mass
            balances and their uncertainties from GRACE data. Journal of Geophysical Research (Solid Earth), 119:6048–6066,
            doi:10.1002/2013JB010923.
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- Schrama, E., 2018. Precision orbit determination performance for CryoSat-2. Advances in Space Research, 61:235–247,
            doi:10.1016/j.asr.2017.11.001.
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- Schrama, E. J. O. and Visser, P. N. A. M., 2024. Choices for temporal gravity field modeling for
            precision orbit determination of CryoSat-2. Advances in Space Research, 73(1):31–41, doi:10.1016/j.asr.2023.11.034.
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         - Schrapffer, Anthony, Polcher, Jan, Sörensson, Anna, and Fita, Llu\'ıs, 2023. Introducing a new floodplain scheme
            in ORCHIDEE (version 7885): validation and evaluation over the Pantanal wetlands. Geoscientific Model Development,
            16(20):5755–5782, doi:10.5194/gmd-16-5755-2023.
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         - Schreiter, L., Arnold, D., Sterken, V., and Jäggi, A., 2019. Mitigation of ionospheric signatures in Swarm GPS gravity
            field estimation using weighting strategies. Annales Geophysicae, 37:111–127, doi:10.5194/angeo-37-111-2019.
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- Schreiter, Lucas, Stolle, Claudia, Rauberg, Jan, Kervalishvili, Guram, van den Ijssel, Jose, Arnold, Daniel, Xiong, Chao,
            and Callegare, Andyara, 2023. Topside Ionosphere Sounding From the CHAMP, GRACE, and GRACE-FO Missions. Radio Science,
            58(3):e2022RS007552, doi:10.1029/2022RS007552.
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- Schreiter, Lucas, Brack, Andreas, Männel, Benjamin, Schuh, Harald, Arnold, Daniel, and Jäggi, Adrian, 2024. Imaging
            of the Ionosphere and Plasmasphere Using GNSS Slant TEC Obtained From LEO Satellites. Radio Science, 59(12):2024RS008058,
            doi:10.1029/2024RS008058.
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         - Schröder, Stefan, Stellmer, Simon, and Kusche, Jürgen, 2021. Potential and scientific requirements of optical clock
            networks for validating satellite-derived time-variable gravity data. Geophysical Journal International, 226(2):764–779,
            doi:10.1093/gji/ggab132.
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         - Schröter, J., Losch, M., and Sloyan, B., 2002. Impact of the Gravity Field and Steady-State Ocean Circulation Explorer
            (GOCE) mission on ocean circulation estimates 2. Volume and heat fluxes across hydrographic sections of unequally spaced stations.
            Journal of Geophysical Research (Oceans), 107:3012–+, doi:10.1029/2000JC000647.
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         - Schultz, K. W., Sachs, M. K., Heien, E. M., Rundle, J. B., Turcotte, D. L., and Donnellan, A., 2016.
            Simulating Gravity Changes in Topologically Realistic Driven Earthquake Fault Systems: First Results. Pure and Applied
            Geophysics, 173:827–838, doi:10.1007/s00024-014-0926-4.
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         - Schulze, K., Kusche, J., Gerdener, H., Döll, P., and Müller Schmied, H., 2024. Benefits and Pitfalls of GRACE and
            Streamflow Assimilation for Improving the Streamflow Simulations of the WaterGAP Global Hydrology Model. Journal of Advances
            in Modeling Earth Systems, 16(10):e2023MS004092, doi:10.1029/2023MS004092.
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         - Schumacher, M., Kusche, J., and Döll, P., 2016. A systematic impact assessment of GRACE error correlation on data assimilation
            in hydrological models. Journal of Geodesy, 90:537–559, doi:10.1007/s00190-016-0892-y.
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- Schumacher, M., Forootan, E., van Dijk, A. I. J. M., Müller Schmied, H., Crosbie, R. S., Kusche,
            J., and Döll, P., 2018. Improving drought simulations within the Murray-Darling Basin by combined calibration/assimilation
            of GRACE data into the WaterGAP Global Hydrology Model. Remote Sensing of Environment, 204:212–228, doi:10.1016/j.rse.2017.10.029.
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- Schumacher, Maike, Eicker, Annette, Kusche, Jürgen, Schmied, Hannes Müller, and Döll, Petra, 2016. Covariance
            Analysis and Sensitivity Studies for GRACE Assimilation into WGHM. In Rizos, Chris and Willis, Pascal (editors), IAG 150
            Years, pp. 241–247, Springer International Publishing, Cham.
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         - Schütze, D., Stede, G., Müller, V., Gerberding, O., Mahrdt, C., Sheard, B., Heinzel, G., and Danzmann, K., 2013.
            LISA-like Laser Ranging for GRACE Follow-on. In Auger, G., Binétruy, P., and Plagnol, E. (editors), Astronomical
            Society of the Pacific Conference Series, Vol. 467, pp. 285–.
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- Schütze, D., Müller, V., Stede, G., Sheard, B. S., Heinzel, G., Danzmann, K., Sutton, A. J., and Shaddock,
            D. A., 2014. Retroreflector for GRACE follow-on: Vertex vs point of minimal coupling. Optics Express, 22:9324,
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- Schütze, D., Farrant, D., Shaddock, D. A., Sheard, B. S., Heinzel, G., and Danzmann, K., 2014. Measuring coalignment
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- Schütze, D., Stede, G., Müller, V., Gerberding, O., Bandikova, T., Sheard, B. S., Heinzel, G., and Danzmann,
            K., 2014. Laser beam steering for GRACE Follow-On intersatellite interferometry. Optics Express, 22:24117, doi:10.1364/OE.22.024117.
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- Schütze, D. and LRI team, 2016. Measuring Earth: Current status of the GRACE Follow-On Laser Ranging Interferometer.
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- Schütze, Daniel, Intersatellite laser interferometry : test environments for GRACE follow-on. Ph.D. Thesis, Leibniz University,
            Hannover, Germany, 2014.
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         - Sebastian, Dawn Emil, Pathak, Amey, and Ghosh, Subimal, 2016. Use of Atmospheric Budget to Reduce Uncertainty in Estimated
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            a large-scale integrated hydrologic model with detailed three-dimensional subsurface representation. Hydrogeology Journal,
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         - Seehaus, T., Marinsek, S., Helm, V., Skvarca, P., and Braun, M., 2015. Changes in ice dynamics, elevation and mass discharge
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         - Seitz, F., Schmidt, M., and Shum, C. K., 2008. Signals of extreme weather conditions in Central Europe in GRACE 4-D hydrological
            mass variations. Earth and Planetary Science Letters, 268:165–170, doi:10.1016/j.epsl.2008.01.001.
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         - Seka, Ayalkibet Mekonnen, Zhang, Jiahua, Zhang, Da, Ayele, Elias Gebeyehu, Han, Jiaqi, Prodhan, Foyez Ahmed, Zhang, Guoping,
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         - Senay, G. B., Velpuri, N. M., Bohms, S., Demissie, Y., and Gebremichael, M., 2014. Understanding the hydrologic
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         - Seo, K.-W., Wilson, C. R., Famiglietti, J. S., Chen, J. L., and Rodell, M., 2006. Terrestrial water mass load
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- Seo, K.-W. and Wilson, C. R., 2005. Simulated estimation of hydrological loads from GRACE. Journal of Geodesy,
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- Seo, K. W., Wilson, C. R., Han, S. C., and Waliser, D. E., 2008. Gravity Recovery and Climate Experiment
            (GRACE) alias error from ocean tides. Journal of Geophysical Research (Solid Earth), 113(B12):3405–+, doi:10.1029/2006JB004747.
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- Seo, K.-W., Wilson, C. R., Chen, J., and Waliser, D. E., 2008. GRACE's spatial aliasing error. Geophysical Journal
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- Seo, K.-W., Ryu, D., Kim, B.-M., Waliser, D. E., Tian, B., and Eom, J., 2010. GRACE and AMSR-E-based estimates of winter
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- Seo, K.-W., Hydrological applications of Gravity Recovery and Climate Experiment (GRACE). Ph.D. Thesis, The University of
            Texas at Austin, 2005.
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- Seo, K.-W., Wilson, C. R., Scambos, T., Kim, B.-M., Waliser, D. E., Tian, B., Kim, B.-H., and Eom, J., 2015. Surface
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- Seo, J. Y. and Lee, S.-I., 2016. Integration of GRACE, ground observation, and land-surface models for groundwater storage
            variations in South Korea. International Journal of Remote Sensing, 37:5786–5801, doi:10.1080/01431161.2016.1249301.
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- Seo, Ki-Weon, Oh, Seokhoon, Eom, Jooyoung, Chen, Jianli, and Wilson, Clark R., 2020. Constrained Linear Deconvolution of GRACE
            Anomalies to Correct Spatial Leakage. Remote Sensing, 12(11):1798, doi:10.3390/rs12111798.
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- Seo, Ki-Weon, Kim, Jae-Seung, Youm, Kookhyoun, Chen, Jianli, and Wilson, Clark R., 2021. Secular polar motion observed by
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- Seo, J. Y. and Lee, S. -I., 2015. Multi-Platform Satellite Based Estimates of Runoff in Ungauged Areas. ISPRS - International
            Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XL24:61–62, doi:10.5194/isprsarchives-XL-2-W4-61-2015.
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         - Seoane, L., Nastula, J., Bizouard, C., and Gambis, D., 2009. The use of gravimetric data from GRACE mission in the understanding
            of polar motion variations. Geophysical Journal International, 178:614–622, doi:10.1111/j.1365-246X.2009.04181.x.
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- Seoane, L., Biancale, R., and Gambis, D., 2012. Agreement between Earth's rotation and mass displacement as detected by GRACE.
            Journal of Geodynamics, 62:49–55, doi:10.1016/j.jog.2012.02.008.
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- Seoane, L., Ramillien, G., Frappart, F., and Leblanc, M., 2013. Regional GRACE-based estimates of water mass variations over
            Australia: validation and interpretation. Hydrology and Earth System Sciences, 17:4925–4939, doi:10.5194/hess-17-4925-2013.
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         - Seraphin, Pierre, Gonçalvès, Julio, Hamelin, Bruno, Stieglitz, Thomas, and Deschamps, Pierre, 2022. Influence
            of intensive agriculture and geological heterogeneity on the recharge of an arid aquifer system (Saq-Ram, Arabian Peninsula)
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         - Seyoum, W. M. and Milewski, A. M., 2016. Monitoring and comparison of terrestrial water storage changes in the northern
            high plains using GRACE and in-situ based integrated hydrologic model estimates. Advances in Water Resources, 94:31–44,
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- Seyoum, W. M. and Milewski, A. M., 2017. Improved methods for estimating local terrestrial water dynamics from GRACE
            in the Northern High Plains. Advances in Water Resources, 110:279–290, doi:10.1016/j.advwatres.2017.10.021.
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- Seyoum, W. M., 2018. Characterizing water storage trends and regional climate influence using GRACE observation and satellite
            altimetry data in the Upper Blue Nile River Basin. Journal of Hydrology, 566:274–284, doi:10.1016/j.jhydrol.2018.09.025.
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- Seyoum, W., Kwon, D., and Milewski, A., 2019. Downscaling GRACE TWSA Data into High-Resolution Groundwater Level Anomaly Using
            Machine Learning-Based Models in a Glacial Aquifer System. Remote Sensing, 11:824, doi:10.3390/rs11070824.
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         - Shabanloui, A., A new approach for a kinematic-dynamic determination of low sate llite orbits based on GNSS observations.
            Ph.D. Thesis, University of Bonn, Germany, 2008.
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         - Shafiei Joud, M. S., Sjöberg, L. E., and Bagherbandi, M., 2017. Use of GRACE data to detect the present land
            uplift rate in Fennoscandia. Geophysical Journal International, 209:909–922, doi:10.1093/gji/ggx063.
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         - Shah, Deep and Mishra, Vimal, 2020. Integrated Drought Index (IDI) for Drought Monitoring and Assessment in India. Water
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- Shah, Deep and Mishra, Vimal, 2021. Strong Influence of Changes in Terrestrial Water Storage on Flood Potential in India.
            Journal of Geophysical Research (Atmospheres), 126(1):e33566, doi:10.1029/2020JD033566.
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         - Shahbazi, Maryam, Zarei, Heidar, and Solgi, Abazar, 2024. A new approach in using the GRACE satellite data and artificial
            intelligence models for modeling and predicting the groundwater level (case study: Aspas aquifer in Southern Iran). Environmental
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         - Shahraki, M. and Schmeling, H., 2012. Plume-induced geoid anomalies from 2D axi-symmetric temperature- and pressure-dependent
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         - Shami, S. and Ghorbani, Z., 2019. Investigating Water Storage Changes in Iran Using GRACE and Chirps Data in the Google Earth
            Engine System. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences,
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            humid tropics: Validation of GRACE measurements in the Bengal Basin. Water Resources Research, 48(2):W02508, doi:10.1029/2011WR010993.
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         - Shang, K., Guo, J., Shum, C. K., Dai, C., and Luo, J., 2015. GRACE time-variable gravity field recovery using an improved
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- Shang, K., GRACE Time-Variable Gravity Field Recovery Using an Improved Energy Balance Formalism. Ph.D. Thesis, The Ohio State
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- Shang, Qi, Liu, Xiangnan, Deng, Xinyu, and Zhang, Biyao, 2019. Downscaling of GRACE datasets based on relevance vector machine
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- Shang, Peisi, Su, Xiaoli, and Luo, Zhicai, 2022. Characteristics of the Greenland Ice Sheet Mass Variations Revealed by GRACE/GRACE
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         - Shao, Kai, Gu, Defeng, Chang, Xiao, Yi, Bin, and Wang, Zhengming, 2019. Impact of GPS receiver antenna GRAPHIC residual variations
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- Shao, Chunxiu and Liu, Yonghe, 2023. Analysis of Groundwater Storage Changes and Influencing Factors in China Based on GRACE
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- Sharifi, M. A., Safari, A., and Ghobadi-Far, K., 2013. Rosborough Formulation in Satellite Gravity Gradiometry. Artificial
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- Sharifi, M. A., Seif, M. R., and Hadi, M. A., 2013. A Comparison Between Numerical Differentiation and Kalman
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- Sharifi, M. A. and Shahamat, A., 2017. Detection of co-seismic earthquake gravity field signals using GRACE-like mission
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         - Sheffield, J., Ferguson, C. R., Troy, T. J., Wood, E. F., and McCabe, M. F., 2009. Closing the terrestrial
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- Singh, Anil Kumar, Tripathi, Jayant Nath, Kotlia, Bahadur Singh, Singh, K. K., and Kumar, Amit, 2019. Monitoring groundwater
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- Singh, Alka, Seitz, Florian, and Schwatke, Christian, 2012. Inter-annual water storage changes in the Aral Sea from multi-mission
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- Singh, Alka, Behrangi, Ali, Fisher, Joshua B., and Reager, John T., 2018. On the Desiccation of the South Aral Sea Observed
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         - Sinha, D., Syed, T. H., Famiglietti, J. S., Reager, J. T., and Thomas, R. C., 2017. Characterizing Drought
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         - Sjöberg, Lars E. and Bagherbandi, Mohammad, 2020. Upper mantle density and surface gravity change in Fennoscandia, determined
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         - Stolle, C., Michaelis, I., Xiong, C., Rother, M., Usbeck, Th., Yamazaki, Y., Rauberg, J., and Styp-Rekowski, K., 2021. Observing
            Earth's magnetic environment with the GRACE-FO mission. Earth, Planets, and Space, 73(1):51, doi:10.1186/s40623-021-01364-w.
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         - Strassberg, G., Scanlon, B. R., and Rodell, M., 2007. Comparison of seasonal terrestrial water storage variations from
            GRACE with groundwater-level measurements from the High Plains Aquifer (USA). Geophysical Research Letters, 34:14402–+,
            doi:10.1029/2007GL030139.
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- Strassberg, G., Scanlon, B. R., and Chambers, D., 2009. Evaluation of groundwater storage monitoring with the GRACE satellite:
            Case study of the High Plains aquifer, central United States. Water Resources Research, 45:5410–+, doi:10.1029/2008WR006892.
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         - Stray, Ben, Bosch-Lluis, Xavier, Thompson, Robert, Okino, Clayton, Yu, Nan, Lay, Norman, Muirhead, Brian, Hyon, Jason, Leopardi,
            Holly, Brereton, Peter, Mylapore, Anand, Loomis, Bryant, Luthcke, Scott, Ghuman, Parminder, Bettadpur, Srinivas, Lachmann,
            Maike Diana, Stolz, Thomas, Kuehl, Christopher, Weise, Dennis, Ahlers, Holger, Schubert, Christian, Bawamia, Ahmad, and Chiow,
            Sheng-wey, 2025. Quantum gravity gradiometry for future mass change science. EPJ Quantum Technology, 12(1):35, doi:10.1140/epjqt/s40507-025-00338-1.
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         - Styp-Rekowski, Kevin, Michaelis, Ingo, Korte, Monika, and Stolle, Claudia, 2025. Physics-informed neural networks for the
            improvement of platform magnetometer measurements. Physics of the Earth and Planetary Interiors, 358:107283, doi:10.1016/j.pepi.2024.10728310.22541/au.170602061.18680921/v2.
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         - Su, H., Yang, Z.-L., Dickinson, R. E., Wilson, C. R., and Niu, G.-Y., 2010. Multisensor snow data assimilation at
            the continental scale: The value of Gravity Recovery and Climate Experiment terrestrial water storage information. Journal
            of Geophysical Research (Atmospheres), 115(D14):10104–+, doi:10.1029/2009JD013035.
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- Su, X., Shum, C. K., Guo, J., Duan, J., Howat, I., and Yi, Y., 2015. High resolution Greenland ice sheet inter-annual
            mass variations combining GRACE gravimetry and Envisat altimetry. Earth and Planetary Science Letters, 422:11–17,
            doi:10.1016/j.epsl.2015.04.016.
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- Su, X., Shum, C. K., Guo, J., Howat, I. M., Kuo, C., Jezek, K. C., Duan, J., and Yi, Y., 2018. High-Resolution
            Interannual Mass Anomalies of the Antarctic Ice Sheet by Combining GRACE Gravimetry and ENVISAT Altimetry. IEEE Transactions
            on Geoscience and Remote Sensing, 56:539–546, doi:10.1109/TGRS.2017.2751070.
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- Su, Xiaoli, Guo, Junyi, Shum, C. K., Luo, Zhicai, and Zhang, Yu, 2020. Increased Low Degree Spherical Harmonic Influences
            on Polar Ice Sheet Mass Change Derived from GRACE Mission. Remote Sensing, 12(24):4178, doi:10.3390/rs12244178.
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- Su, Youzhe, Guo, Bin, Zhou, Ziteng, Zhong, Yulong, and Min, Leilei, 2020. Spatio-Temporal Variations in Groundwater Revealed
            by GRACE and Its Driving Factors in the Huang-Huai-Hai Plain, China. Sensors, 20(3):922, doi:10.3390/s20030922.
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- Su, Guangli and Zhan, Wei, 2021. Seasonal and long-term vertical land motion in Southwest China determined using GPS, GRACE,
            and surface loading model. Earth, Planets and Space, 73(1):131, doi:10.1186/s40623-021-01459-4.
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- Su, Guangli and Zhan, Wei, 2022. Abnormal depletion of terrestrial water storage and crustal uplift owing to the 2019 drought
            in Yunnan, China. Geophysical Journal International, 231(1):108–117, doi:10.1093/gji/ggac183.
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- Su, XiaoLi, Ping, JinSong, and Ye, QiXin, 2011. Terrestrial water variations in the North China Plain revealed by the GRACE
            mission. Science China Earth Sciences, 54(12):1965–1970, doi:10.1007/s11430-011-4280-4.
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- Su, Xiaoli, Variations of Continental Ice Sheets Combining Satellite Gravimetry and Altimetry. Ph.D. Thesis, The Ohio State
            University, 2015.
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- Su, Kai, Zheng, Wei, Yin, Wenjie, Hu, Litang, and Shen, Yifan, 2022. Improving the Accuracy of Groundwater Storage Estimates
            Based on Groundwater Weighted Fusion Model. Remote Sensing, 14(1):202, doi:10.3390/rs14010202.
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- Su, Yong, Yang, Yi-Fei, and Yang, Yi-Yu, 2025. Learning-based Reconstruction of GRACE Data Based on Changes in Total Water
            Storage and Its Accuracy Assessment. Applied Geophysics, 22(2):365–382, doi:10.1007/s11770-024-1124-5.
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         - Suesser-Rechberger, Barbara, Krauss, Sandro, Strasser, Sebastian, and Mayer-Guerr, Torsten, 2022. Improved precise kinematic
            LEO orbits based on the raw observation approach. Advances in Space Research, 69(10):3559–3570, doi:10.1016/j.asr.2022.03.014.
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         - Sui, Wenyan, Guo, Junru, Song, Jun, Liu, Zhiliang, Wang, Meng, Li, Xibin, Fu, Yanzhao, Li, Yongquan, Cai, Yu, Wang, Linhui,
            Li, Lingli, Guo, Xiaofang, and Zuo, Wenting, 2021. The construction of high precision geostrophic currents based on new gravity
            models of GOCE and satellite altimetry data. Acta Oceanologica Sinica, 40(3):142–152, doi:10.1007/s13131-021-1707-4.
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         - Sultan, Mohamed, Sturchio, Neil C., Alsefry, Saleh, Emil, Mustafa K., Ahmed, Mohamed, Abdelmohsen, Karem, AbuAbdullah, Mazen
            M., Yan, Eugene, Save, Himanshu, Alharbi, Talal, Othman, Abdullah, and Chouinard, Kyle, 2019. Assessment of age, origin, and
            sustainability of fossil aquifers: A geochemical and remote sensing-based approach. Journal of Hydrology, 576:325–341,
            doi:10.1016/j.jhydrol.2019.06.017.
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         - Sun, W. and Okubo, S., 2004. Truncated co-seismic geoid and gravity changes in the domain of spherical harmonic degree. Earth,
            Planets, and Space, 56:881–892, doi:10.1186/BF03352535.
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- Sun, W. and Okubo, S., 2004. Coseismic deformations detectable by satellite gravity missions: A case study of Alaska (1964,
            2002) and Hokkaido (2003) earthquakes in the spectral domain. Journal of Geophysical Research (Solid Earth), 109(B18):4405–+,
            doi:10.1029/2003JB002554.
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- Sun, W., Okubo, S., and Sugano, T., 2006. Determining dislocation Love numbers using satellite gravity mission observations.
            Earth Planets Space, 58:497–503, doi:10.1186/BF03351946.
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- Sun, W., Okubo, S., Fu, G., and Araya, A., 2009. General formulations of global co-seismic deformations caused by an arbitrary
            dislocation in a spherically symmetric earth model-applicable to deformed earth surface and space-fixed point. Geophysical
            Journal International, 177:817–833, doi:10.1111/j.1365-246X.2009.04113.x.
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- Sun, A. Y., Green, R., Rodell, M., and Swenson, S., 2010. Inferring aquifer storage parameters using satellite and in
            situ measurements: Estimation under uncertainty. Geophysical Research Letters, 37:10401–+, doi:10.1029/2010GL043231.
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- Sun, A. Y., Green, R., Swenson, S., and Rodell, M., 2012. Toward calibration of regional groundwater models using GRACE
            data. Journal of Hydrology, 422:1–9, doi:10.1016/j.jhydrol.2011.10.025.
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- Sun, W. and Zhou, X., 2012. Coseismic deflection change of the vertical caused by the 2011 Tohoku-Oki earthquake (M$_w$ 9.0).
            Geophysical Journal International, 189:937–955, doi:10.1111/j.1365-246X.2012.05434.x.
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- Sun, R., Li, L., and Li, P., 2012. An analysis of the steric sea level change by introducing sea surface temperature. Journal
            of Ocean University of China, 12:37–44, doi:10.1007/s11802-013-1919-0.
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- Sun, A. Y., 2013. Predicting groundwater level changes using GRACE data. Water Resources Research, 49:5900–5912,
            doi:10.1002/wrcr.20421.
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- Sun, W., 2014. Recent advances of computing coseismic deformations in theory and applications. Earthquake Science,
            27:217–227, doi:10.1007/s11589-014-0077-9.
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- Sun, Q., Tashpolat, T., Ding, J. L., Zhang, F., and Mamat, S., 2014. GRACE Data-based Estimation of Spatial Variations
            in Water Storage over the Central Asia during 2003-2013. Acta Astronomica Sinica, 55:498–511.
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- Sun, A. Y., Chen, J., and Donges, J., 2015. Global terrestrial water storage connectivity revealed using complex climate
            network analyses. Nonlinear Processes in Geophysics, 22:433–446, doi:10.5194/npg-22-433-2015.
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- Sun, Y., Ditmar, P., and Riva, R., 2016. Observed changes in the Earth's dynamic oblateness from GRACE data and geophysical
            models. Journal of Geodesy, 90:81–89, doi:10.1007/s00190-015-0852-y.
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- Sun, Y., Riva, R., and Ditmar, P., 2016. Optimizing estimates of annual variations and trends in geocenter motion and J$_2$
            from a combination of GRACE data and geophysical models. Journal of Geophysical Research (Solid Earth), 121:8352–8370,
            doi:10.1002/2016JB013073.
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- Sun, Y., Ditmar, P., and Riva, R., 2017. Statistically optimal estimation of degree-1 and C$_20$ coefficients based on GRACE
            data and an ocean bottom pressure model. Geophysical Journal International, 210:1305–1322, doi:10.1093/gji/ggx241.
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- Sun, Z., Zhu, X., Pan, Y., and Zhang, J., 2017. Assessing Terrestrial Water Storage and Flood Potential Using GRACE Data in
            the Yangtze River Basin, China. Remote Sensing, 9:1011, doi:10.3390/rs9101011.
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- Sun, A., Scanlon, B., AghaKouchak, A., and Zhang, Z., 2017. Using GRACE Satellite Gravimetry for Assessing Large-Scale Hydrologic
            Extremes. Remote Sensing, 9:1287, doi:10.3390/rs9121287.
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- Sun, Z., Zhu, X., Pan, Y., Zhang, J., and Liu, X., 2018. Drought evaluation using the GRACE terrestrial water storage deficit
            over the Yangtze River Basin, China. Science of the Total Environment, 634:727–738, doi:10.1016/j.scitotenv.2018.03.292.
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- Sun, M., Dong, Q., Jiao, M., Zhao, X., Gao, X., Wu, P., and Wang, A., 2018. Estimation of Actual Evapotranspiration in a Semiarid
            Region Based on GRACE Gravity Satellite Data—A Case Study in Loess Plateau. Remote Sensing, 10:2032, doi:10.3390/rs10122032.
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- Sun, Y., Riva, R., Ditmar, P., and Rietbroek, R., 2019. Using GRACE to Explain Variations in the Earth's Oblateness. Geophysical
            Research Letters, 46:158–168, doi:10.1029/2018GL080607.
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- Sun, A. Y., Scanlon, B. R., Zhang, Z., Walling, D., Bhanja, S. N., Mukherjee, A., and Zhong, Z., 2019. Combining
            Physically Based Modeling and Deep Learning for Fusing GRACE Satellite Data: Can We Learn From Mismatch?. Water Resources
            Research, 55:1179–1195, doi:10.1029/2018WR023333.
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- Sun, Yu and Riva, Riccardo E. M., 2020. A global semi-empirical glacial isostatic adjustment (GIA) model based on Gravity
            Recovery and Climate Experiment (GRACE) data. Earth System Dynamics, 11(1):129–137, doi:10.5194/esd-11-129-2020.
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- Sun, Alexander Y., Scanlon, Bridget R., Save, Himanshu, and Rateb, Ashraf, 2021. Reconstruction of GRACE Total Water Storage
            Through Automated Machine Learning. Water Resources Research, 57(2):e28666, doi:10.1029/2020WR028666.
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- Sun, Pengchao, Guo, Changsheng, and Wei, Dongping, 2022. GRACE Data Explore Moho Change Characteristics Beneath the South
            America Continent near the Chile Triple Junction. Remote Sensing, 14(4):924, doi:10.3390/rs14040924.
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- Sun, Jianchong, Hu, Litang, Liu, Xin, and Sun, Kangning, 2022. Enhanced Understanding of Groundwater Storage Changes under
            the Influence of River Basin Governance Using GRACE Data and Downscaling Model. Remote Sensing, 14(19):4719, doi:10.3390/rs14194719.
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- Sun, Jianwei, Wang, Linsong, Peng, Zhenran, Fu, Zhenyan, and Chen, Chao, 2022. The Sea Level Fingerprints of Global Terrestrial
            Water Storage Changes Detected by GRACE and GRACE-FO Data. Pure and Applied Geophysics, 179(9):3493–3509, doi:10.1007/s00024-022-03123-8.
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- Sun, Jianchong, Hu, Litang, Chen, Fei, Sun, Kangning, Yu, Lili, and Liu, Xin, 2023. Downscaling Simulation of Groundwater
            Storage in the Beijing, Tianjin, and Hebei Regions of China Based on GRACE Data. Remote Sensing, 15(6):1490, doi:10.3390/rs15061490.
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- Sun, Yu, Li, Yang, Guo, Xiang, and Guo, Jinyun, 2023. Estimating C$_30$ coefficients for GRACE/GRACE-FO time-variable gravity
            field models using the GRACE-OBP approach. Journal of Geodesy, 97(3):20, doi:10.1007/s00190-023-01707-3.
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- Sun, Shang-Biao, Yan, Jian-Guo, Gao, Wu-Tong, Wang, Bo, Wang, Zhen, Ye, Mao, and Barriot, Jean-Pierre, 2023. Simulated Gravity
            Field Estimation for the Main Belt Comet 133P/Elst-Pizarro Based on a Satellite-to-satellite Tracking Mode. Research in
            Astronomy and Astrophysics, 23(9):095012, doi:10.1088/1674-4527/acdc89.
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- Sun, Jianchong, Hu, Litang, Zhang, Junchao, and Yin, Wenjie, 2024. Providing Enhanced Insights into Groundwater Exchange Patterns
            through Downscaled GRACE Data. Remote Sensing, 16(5):812, doi:10.3390/rs16050812.
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- Sun, Pengchao, Li, Mengyu, Guo, Changsheng, and Wei, Dongping, 2024. The relationship between GRACE gravity and the seismic
            b-value: a case study of the Northern Chile Triple Junction (25° S-40° S). Geophysical Journal International,
            237(3):1575–1608, doi:10.1093/gji/ggae116.
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- Sun, Alexander Y., Save, Himanshu, Rateb, Ashraf, Jiang, Peishi, and Scanlon, Bridget R., 2024. Deciphering the Role of Total
            Water Storage Anomalies in Mediating Regional Flooding. Geophysical Research Letters, 51(16):e2023GL108126, doi:10.1029/2023GL108126.
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- Sun, WenKe, Hasegawa, Takashi, Zhang, XinLin, Fukuda, Yoichi, Shum, C. K., and Wang, Lei, 2011. Effects of Gaussian filter
            in processing GRACE data: Gravity rate of change at Lhasa, southern Tibet. Science China Earth Sciences, 54(9):1378–1385,
            doi:10.1007/s11430-011-4233-y.
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- Sun, Wenke, Wang, Qi, Li, Hui, Wang, Yong, and Okubo, Shuhei, 2011. A Reinvestigation of Crustal Thickness in the Tibetan
            Plateau Using Absolute Gravity, GPS and GRACE Data. Terrestrial, Atmospheric and Oceanic Sciences, 22(2):109–119,
            doi:10.3319/TAO.2010.06.07.01(TibXS).
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- Sun, Qin, Xie, ZhengHui, and Tian, XiangJun, 2015. GRACE terrestrial water storage data assimilation based on the ensemble
            four-dimensional variational method PODEn4DVar: Method and validation. Science China Earth Sciences, 58(3):371–384,
            doi:10.1007/s11430-014-4978-1.
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- Sun, Zhangli, Long, Di, Yang, Wenting, Li, Xueying, and Pan, Yun, 2020. Reconstruction of GRACE Data on Changes in Total Water
            Storage Over the Global Land Surface and 60 Basins. Water Resources Research, 56(4):e2019WR026250, doi:10.1029/2019WR026250.
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- Sun, Weicheng and Zhang, Xingfu, 2024. Revealing Water Storage Changes and Ecological Water Conveyance Benefits in the Tarim
            River Basin over the Past 20 Years Based on GRACE/GRACE-FO. Remote Sensing, 16(23):4355, doi:10.3390/rs16234355.
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- Sun, Shuang, Chai, Hongzhou, Wang, Min, Liu, Changjian, Zhou, Yingdong, Zhang, Qiankun, and Liu, Yang, 2025. POD performance
            of LEO satellites with Galileo high accuracy service (HAS) of initial service phase. Advances in Space Research, 75(6):4963–4976,
            doi:10.1016/j.asr.2024.12.062.
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         - Susanto, R. D. and Song, Y. T., 2015. Indonesian throughflow proxy from satellite altimeters and gravimeters. Journal
            of Geophysical Research (Oceans), 120:2844–2855, doi:10.1002/2014JC010382.
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         - Sutanudjaja, E. H., van Beek, R., Wanders, N., Wada, Y., Bosmans, J. H. C., Drost, N., van der Ent, R. J.,
            de Graaf, I. E. M., Hoch, J. M., de Jong, K., Karssenberg, D., López López, P., Peßenteiner,
            S., Schmitz, O., Straatsma, M. W., Vannametee, E., Wisser, D., and Bierkens, M. F. P., 2018. PCR-GLOBWB 2:
            a 5 arcmin global hydrological and water resources model. Geoscientific Model Development, 11:2429–2453, doi:10.5194/gmd-11-2429-2018.
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         - Sutterley, T. C., Velicogna, I., Csatho, B., van den Broeke, M., Rezvan-Behbahani, S., and Babonis, G., 2014. Evaluating
            Greenland glacial isostatic adjustment corrections using GRACE, altimetry and surface mass balance data. Environmental
            Research Letters, 9(1):014004, doi:10.1088/1748-9326/9/1/014004.
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- Sutterley, T. C., Velicogna, I., Rignot, E., Mouginot, J., Flament, T., van den Broeke, M. R., van Wessem, J. M.,
            and Reijmer, C. H., 2014. Mass loss of the Amundsen Sea Embayment of West Antarctica from four independent techniques.
            Geophysical Research Letters, 41:8421–8428, doi:10.1002/2014GL061940.
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- Sutterley, Tyler C., Velicogna, Isabella, and Hsu, Chia-Wei, 2020. Self-Consistent Ice Mass Balance and Regional Sea Level
            From Time-Variable Gravity. Earth and Space Science, 7(3):e00860, doi:10.1029/2019EA000860.
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         - Sutton, E. K., Forbes, J. M., Nerem, R. S., and Woods, T. N., 2006. Neutral density response to the solar
            flares of October and November, 2003. Geophysical Research Letters, 33:22101–+, doi:10.1029/2006GL027737.
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- Sutton, E. K., 2018. A New Method of Physics-Based Data Assimilation for the Quiet and Disturbed Thermosphere. Space
            Weather, 16:736–753, doi:10.1002/2017SW001785.
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- Sutton, Eric K., Effects of solar disturbances on the thermosphere densities and winds from CHAMP and GRACE satellite accelerometer
            data. Ph.D. Thesis, University of Colorado, Boulder, 2008.
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         - Suzuki, Kazuyoshi and Matsuo, Koji, 2020. GRACE-based terrestrial water storage anomaly estimation and its application in
            hydrological science. Journal of Japanese Association of Hydrological Sciences, 50(2):39–53, doi:10.4145/jahs.50.39.
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- Suzuki, Kazuyoshi, Matsuo, Koji, Yamazaki, Dai, Ichii, Kazuhito, Iijima, Yoshihiro, Papa, Fabrice, Yanagi, Yuji, and Hiyama,
            Tetsuya, 2018. Hydrological Variability and Changes in the Arctic Circumpolar Tundra and the Three Largest Pan-Arctic River
            Basins from 2002 to 2016. Remote Sensing, 10(3):402, doi:10.3390/rs10030402.
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         - Svendsen, P. L., Andersen, O. B., and Nielsen, A. A., 2013. Acceleration of the Greenland ice sheet mass loss
            as observed by GRACE: Confidence and sensitivity. Earth and Planetary Science Letters, 364:24–29, doi:10.1016/j.epsl.2012.12.010.
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         - Swails, Erin, Yang, X., Asefi, S., Hergoualc'h, K., Verchot, L., McRoberts, R. E., and Lawrence, D., 2019. Linking soil
            respiration and water table depth in tropical peatlands with remotely sensed changes in water storage from the gravity recovery
            and climate experiment. Mitigation and Adaptation Strategies for Global Change, 24(4):575–590, doi:10.1007/s11027-018-9822-z.
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         - Tang, J., Cheng, H., and Liu, L., 2012. Using nonlinear programming to correct leakage and estimate mass change from GRACE
            observation and its application to Antarctica. Journal of Geophysical Research (Solid Earth), 117(B16):11410, doi:10.1029/2012JB009480.
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- Tang, Senlin, Wang, Hong, Feng, Yao, Liu, Qinghua, Wang, Tingting, Liu, Wenbin, and Sun, Fubao, 2021. Random Forest-Based
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- Tangdamrongsub, Natthachet, Han, Shin-Chan, Jasinski, Michael F., and \vSprlák, Michal, 2019. Quantifying water storage
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               | Teixeira da Encarnação
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         - Velicogna, I. and Wahr, J., 2002. Postglacial rebound and Earth's viscosity structure from GRACE. Journal of Geophysical
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- Velicogna, I. and Wahr, J., 2002. A method for separating Antarctic postglacial rebound and ice mass balance using future
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- Velicogna, I., Wahr, J., and Van den Dool, H., 2001. Can surface pressure be used to remove atmospheric contributions from
            GRACE data with sufficient accuracy to recover hydrological signals?. Journal of Geophysical Research (Solid Earth),
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- Velicogna, I. and Wahr, J., 2005. Greenland mass balance from GRACE. Geophysical Research Letters, 32:18505–+,
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- Velicogna, I., 2009. Increasing rates of ice mass loss from the Greenland and Antarctic ice sheets revealed by GRACE. Geophysical
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            areas of the Lena River basin, Eurasia, detected from GRACE. Geophysical Research Letters, 39:9403, doi:10.1029/2012GL051623.
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         - Vermeersen, Bert L. A., 2004. Challenges From Solid Earth Dynamics for Satellite Gravity Field Missions in the Post-Goce
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         - Vey, S., Steffen, H., Müller, J., and Boike, J., 2013. Inter-annual water mass variations from GRACE in central Siberia.
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         - Voosen, P., 2017. Death watch for climate probe. Science, 357:1225–1225, doi:10.1126/science.357.6357.1225-a.
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         - Voss, K. A., Famiglietti, J. S., Lo, M., Linage, C., Rodell, M., and Swenson, S. C., 2013. Groundwater depletion
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         - Vossepoel, F. C., 2007. Uncertainties in the mean ocean dynamic topography before the launch of the Gravity Field and
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         - Wagner, C., McAdoo, D., Klokocn\'ık, J., and Kostelecký, J., 2006. Degradation of Geopotential Recovery from
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- Wahr, J. and Velicogna, I., 2003. What Might GRACE Contribute to Studies of Post Glacial Rebound?. Space Science Reviews,
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- Wahr, J., 2001. Satellite Measurements of Time Variable Gravity: What Can They Tell Us About the Earth?. APS Meeting Abstracts,
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- Wahr, J., Wingham, D., and Bentley, C., 2000. A method of combining ICESat and GRACE satellite data to constrain Antarctic
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- Wahr, J., Molenaar, M., and Bryan, F., 1998. Time variability of the Earth's gravity field: Hydrological and oceanic effects
            and their possible detection using GRACE. Journal of Geophysical Research (Solid Earth), 103:30205–30230, doi:10.1029/98JB02844.
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- Walczuk, André, Campos, José Eloi Guimarães, and Azevedo, Júlio Henrichs de, 2025. Fractured and
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         - Wan, Z., Zhang, K., Xue, X., Hong, Z., Hong, Y., and Gourley, J. J., 2015. Water balance-based actual evapotranspiration
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         - Wang, H. and Wu, P., 2006. Effects of lateral variations in lithospheric thickness and mantle viscosity on glacially induced
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            water systems area inferred from GRACE time-variable gravity data. Chinese Journal of Geophysics - Chinese Edition,
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- Wang, F., Study on center of mass calibration and K-band ranging system calibration of the GRACE mission. Ph.D. Thesis, The
            University of Texas at Austin, 2003.
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- Wang, H. B., 2010. The Application of Satellite Borne Accelerometer Data to the Study of Upper Atmosphere. Acta Astronomica
            Sinica, 51:435–436.
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- Wang, X., de Linage, C., Famiglietti, J., and Zender, C. S., 2011. Gravity Recovery and Climate Experiment (GRACE) detection
            of water storage changes in the Three Gorges Reservoir of China and comparison with in situ measurements. Water Resources
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- Wang, Furun, Bettadpur, Srinivas, Save, Himanshu, and Kruizinga, Gerhard, 2010. Determination of Center-of-Mass of Gravity
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- Wang, Y. M., Saleh, J., Li, X., and Roman, D. R., 2012. The US Gravimetric Geoid of 2009 (USGG2009): model development
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- Wang, L., Shum, C. K., Simons, F. J., Tapley, B., and Dai, C., 2012. Coseismic and postseismic deformation of the
            2011 Tohoku-Oki earthquake constrained by GRACE gravimetry. Geophysical Research Letters, 39:7301, doi:10.1029/2012GL051104.
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- Wang, L., Shum, C. K., Simons, F. J., Tassara, A., Erkan, K., Jekeli, C., Braun, A., Kuo, C., Lee, H., and Yuan,
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- Wang, X., Gerlach, C., and Rummel, R., 2012. Time-variable gravity field from satellite constellations using the energy integral.
            Geophysical Journal International, 190:1507–1525, doi:10.1111/j.1365-246X.2012.05578.x.
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- Wang, H., Xiang, L., Jia, L., Jiang, L., Wang, Z., Hu, B., and Gao, P., 2012. Load Love numbers and Green's functions for
            elastic Earth models PREM, iasp91, ak135, and modified models with refined crustal structure from Crust 2.0. Computers
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- Wang, L., Shum, C. K., and Jekeli, C., 2012. Gravitational gradient changes following the 2004 December 26 Sumatra-Andaman
            Earthquake inferred from GRACE. Geophysical Journal International, 191:1109–1118, doi:10.1111/j.1365-246X.2012.05674.x.
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- Wang, H., Jia, L., Steffen, H., Wu, P., Jiang, L., Hsu, H., Xiang, L., Wang, Z., and Hu, B., 2013. Increased water storage
            in North America and Scandinavia from GRACE gravity data. Nature Geoscience, 6:38–42, doi:10.1038/ngeo1652.
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- Wang, S., Huang, J., Li, J., Rivera, A., McKenney, D. W., and Sheffield, J., 2014. Assessment of water budget for sixteen
            large drainage basins in Canada. Journal of Hydrology, 512:1–15, doi:10.1016/j.jhydrol.2014.02.058.
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- Wang, H., Guan, H., Gutiérrez-Jurado, H. A., and Simmons, C. T., 2014. Examination of water budget using
            satellite products over Australia. Journal of Hydrology, 511:546–554, doi:10.1016/j.jhydrol.2014.01.076.
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- Wang, H. B., Zhao, C. Y., Zhang, W., Zhan, J. W., and Yu, S. X., 2015. Evaluation of Gravitational Field
            Models Based on the Laser Range Observation of Low Earth Orbit Satellites. Acta Astronomica Sinica, 56:463–473.
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- Wang, S. and Russell, H. A. J., 2016. Forecasting Snowmelt-Induced Flooding Using GRACE Satellite Data: A Case Study
            for the Red River Watershed. Canadian Journal of Remote Sensing, 42:203–213, doi:10.1080/07038992.2016.1171134.
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- Wang, S. and Li, J., 2016. Terrestrial Water Storage Climatology for Canada from GRACE Satellite Observations in 2002–2014.
            Canadian Journal of Remote Sensing, 42:190–202, doi:10.1080/07038992.2016.1171132.
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- Wang, L., Davis, J. L., Hill, E. M., and Tamisiea, M. E., 2016. Stochastic filtering for determining gravity
            variations for decade-long time series of GRACE gravity. Journal of Geophysical Research (Solid Earth), 121:2915–2931,
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- Wang, Q., Yi, S., and Sun, W., 2016. The changing pattern of lake and its contribution to increased mass in the Tibetan Plateau
            derived from GRACE and ICESat data. Geophysical Journal International, 207:528–541, doi:10.1093/gji/ggw293.
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- Wang, H. B., Xiong, Y. Q., and Zhao, C. Y., 2016. The New Calibration Method of Accelerometer in GRACE Satellites
            Based on Precise Solar Radiation Model. Acta Astronomica Sinica, 57:544–559.
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- Wang, H. B., Zhao, C. Y., Liu, Z. G., and Zhang, W., 2016. The Method for Calculating Atmospheric Drag Coefficient
            Based on the Characteristics of Along-track Error in LEO Orbit Prediction. Acta Astronomica Sinica, 57:447–460.
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- Wang, S., Panet, I., Ramillien, G., and Guilloux, F., 2017. Multi-scale modeling of Earth's gravity field in space and time.
            Journal of Geodynamics, 106:46–65, doi:10.1016/j.jog.2017.02.001.
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- Wang, S., Zhou, F., and Russell, H., 2017. Estimating Snow Mass and Peak River Flows for the Mackenzie River Basin Using GRACE
            Satellite Observations. Remote Sensing, 9:256, doi:10.3390/rs9030256.
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- Wang, L., Coseismic Deformation Detection and Quantification for Great Earthquakes Using Spaceborne Gravimetry. Ph.D. Thesis,
            The Ohio State University, 2012.
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- Wang, Z., Hamilton, J., and Su, J., 2017. Variations in freshwater pathways from the Arctic Ocean into the North Atlantic
            Ocean. Progress in Oceanography, 155:54–73, doi:10.1016/j.pocean.2017.05.012.
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- Wang, L., Chen, C., Du, J., and Wang, T., 2017. Detecting seasonal and long-term vertical displacement in the North China
            Plain using GRACE and GPS. Hydrology and Earth System Sciences, 21:2905–2922, doi:10.5194/hess-21-2905-2017.
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- Wang, H.-b., Xiong, Y.-q., and Zhao, C.-y., 2017. New Calibration Method of Accelerometers in GRACE Satellites Based on Precise
            Solar Radiation Model. Chinese Astronomy and Astrophysics, 41:558–576, doi:10.1016/j.chinastron.2017.11.007.
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- Wang, S.-Y., Chen, J. L., Wilson, C. R., Li, J., and Hu, X., 2018. Reconciling GRACE and GPS estimates of long-term
            load deformation in southern Greenland. Geophysical Journal International, 212:1302–1313, doi:10.1093/gji/ggx473.
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- Wang, W., Li, J., Yu, Z., Ding, Y., Xing, W., and Lu, W., 2018. Satellite retrieval of actual evapotranspiration in the Tibetan
            Plateau: Components partitioning, multidecadal trends and dominated factors identifying. Journal of Hydrology, 559:471–485,
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- Wang, S.-Y., Chen, J. L., Wilson, C. R., Li, J., and Hu, X.-G., 2018. Vertical motion at TEHN (Iran) from Caspian
            Sea and other environmental loads. Journal of Geodynamics, 122:17–24, doi:10.1016/j.jog.2018.10.003.
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- Wang, L., Kaban, M., Thomas, M., Chen, C., and Ma, X., 2019. The Challenge of Spatial Resolutions for GRACE-Based Estimates
            Volume Changes of Larger Man-Made Lake: The Case of China's Three Gorges Reservoir in the Yangtze River. Remote Sensing,
            11:99, doi:10.3390/rs11010099.
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- Wang, X., Luo, Z., Zhong, B., Wu, Y., Huang, Z., Zhou, H., and Li, Q., 2019. Separation and Recovery of Geophysical Signals
            Based on the Kalman Filter with GRACE Gravity Data. Remote Sensing, 11:393, doi:10.3390/rs11040393.
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- Wang, Lei and Burgmann, Roland, 2019. Statistical Significance of Precursory Gravity Changes Before the 2011 M$_w$ 9.0 Tohoku-Oki
            Earthquake. Geophysical Research Letters, 46(13):7323–7332, doi:10.1029/2019GL082682.
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- Wang, Linsong, Khan, Shfaqat A., Bevis, Michael, van den Broeke, Michiel R., Kaban, Mikhail K., Thomas, Maik, and Chen, Chao,
            2019. Downscaling GRACE Predictions of the Crustal Response to the Present-Day Mass Changes in Greenland. Journal of Geophysical
            Research (Solid Earth), 124(5):5134–5152, doi:10.1029/2018JB016883.
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- Wang, Jiarong, Chen, Xi, Hu, Qi, and Liu, Jintao, 2020. Responses of terrestrial water storage to climate variation in the
            Tibetan Plateau. Journal of Hydrology, 584:124652, doi:10.1016/j.jhydrol.2020.124652.
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- Wang, Linsong, Chen, Chao, Ma, Xian, Fu, Zhengyan, Zheng, Yuhao, and Peng, Zhenran, 2020. Evaluation of GRACE mascon solutions
            using in-situ geodetic data: The case of hydrologic-induced crust displacement in the Yangtze River Basin. Science of the
            Total Environment, 707:135606, doi:10.1016/j.scitotenv.2019.135606.
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- Wang, Sijia, Liu, Hu, Yu, Yang, Zhao, Wenzhi, Yang, Qiyue, and Liu, Jintao, 2020. Evaluation of groundwater sustainability
            in the arid Hexi Corridor of Northwestern China, using GRACE, GLDAS and measured groundwater data products. Science of
            the Total Environment, 705:135829, doi:10.1016/j.scitotenv.2019.135829.
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- Wang, Shusen, 2019. Freezing Temperature Controls Winter Water Discharge for Cold Region Watershed. Water Resources Research,
            55(12):10,479–10,493, doi:10.1029/2019WR026030.
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- Wang, Tian-Ye, Wang, Ping, Zhang, Yi-Chi, Yu, Jing-Jie, Du, Chao-Yang, and Fang, Yuan-Hao, 2019. Contrasting groundwater depletion
            patterns induced by anthropogenic and climate-driven factors on Alxa Plateau, northwestern China. Journal of Hydrology,
            576:262–272, doi:10.1016/j.jhydrol.2019.06.057.
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- Wang, Fei, Wang, Zongmin, Yang, Haibo, Di, Danyang, Zhao, Yong, and Liang, Qiuhua, 2020. Utilizing GRACE-based groundwater
            drought index for drought characterization and teleconnection factors analysis in the North China Plain. Journal of Hydrology,
            585:124849, doi:10.1016/j.jhydrol.2020.124849.
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- Wang, H., Xiang, L., Steffen, H., Wu, P., Jiang, L., Shen, Q., Piretzidis, D., Sideris, M. G., Hayashi, M., and Jia,
            L., 2019. Converse Trends of the Terrestrial and Ground Water Storage Changes in Canada and the United States. ISPRS -
            International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 4213:1793–1796, doi:10.5194/isprs-archives-XLII-2-W13-1793-2019.
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- Wang, Jielong, Chen, Yi, Wang, Zhanghui, and Shang, Pengfei, 2020. Drought evaluation over Yangtze River basin based on weighted
            water storage deficit. Journal of Hydrology, 591:125283, doi:10.1016/j.jhydrol.2020.125283.
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- Wang, Fengwei, Shen, Yunzhong, Chen, Tianyi, Chen, Qiujie, and Li, Weiwei, 2020. Improved multichannel singular spectrum analysis
            for post-processing GRACE monthly gravity field models. Geophysical Journal International, 223(2):825–839, doi:10.1093/gji/ggaa339.
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- Wang, Fengwei, Shen, Yunzhong, Chen, Qiujie, and Wang, Wei, 2021. Bridging the gap between GRACE and GRACE follow-on monthly
            gravity field solutions using improved multichannel singular spectrum analysis. Journal of Hydrology, 594:125972, doi:10.1016/j.jhydrol.2021.125972.
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- Wang, Lei, Davis, James L., and Howat, Ian M., 2021. Complex Patterns of Antarctic Ice Sheet Mass Change Resolved by Time-Dependent
            Rate Modeling of GRACE and GRACE Follow-On Observations. Geophysical Research Letters, 48(1):e90961, doi:10.1029/2020GL090961.
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- Wang, Qiuyu, Yi, Shuang, and Sun, Wenke, 2021. Continuous Estimates of Glacier Mass Balance in High Mountain Asia Based on
            ICESat-1,2 and GRACE/GRACE Follow-On Data. Geophysical Research Letters, 48(2):e90954, doi:10.1029/2020GL090954.
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- Wang, Wei, Shen, Yunzhong, Wang, Fengwei, and Li, Weiwei, 2021. Two Severe Prolonged Hydrological Droughts Analysis over Mainland
            Australia Using GRACE Satellite Data. Remote Sensing, 13(8):1432, doi:10.3390/rs13081432.
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- Wang, Shusen, Li, Junhua, and Russell, Hazen A. J., 2021. A novel method for cold-region streamflow hydrograph separation
            using GRACE satellite observations. Hydrology and Earth System Sciences, 25(5):2649–2662, doi:10.5194/hess-25-2649-2021.
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- Wang, Song-Yun, Li, Jin, Chen, Jianli, and Hu, Xiao-Gong, 2021. Uncertainty Assessments of Load Deformation from Different
            GPS Time Series Products, GRACE Estimates and Model Predictions: A Case Study over Europe. Remote Sensing, 13(14):2765,
            doi:10.3390/rs13142765.
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- Wang, Xin, Miao, Juan, Lu, Xian, Aa, Ercha, Liu, Ji, Wang, Yuxian, and Liu, Siqing, 2021. Latitudinal Impacts of Joule Heating
            on the High-Latitude Thermospheric Density Enhancement During Geomagnetic Storms. Journal of Geophysical Research (Space
            Physics), 126(7):e28747, doi:10.1029/2020JA028747.
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- Wang, Jing, Forman, Barton A., Girotto, Manuela, and Reichle, Rolf H., 2021. Estimating Terrestrial Snow Mass via Multi-Sensor
            Assimilation of Synthetic AMSR-E Brightness Temperature Spectral Differences and Synthetic GRACE Terrestrial Water Storage
            Retrievals. Water Resources Research, 57(9):e29880, doi:10.1029/2021WR029880.
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- Wang, Linsong, Peng, Zhenran, Ma, Xian, Zheng, Yuhao, and Chen, Chao, 2021. Multiscale gravity measurements to characterize
            2020 flood events and their spatio-temporal evolution in Yangtze river of China. Journal of Hydrology, 603:127176,
            doi:10.1016/j.jhydrol.2021.127176.
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- Wang, Yaxiang, Cao, Ziyi, Pang, Zhaojun, Liu, Yan, Tian, Jiawei, Li, Juan, Yin, Lirong, Zheng, Wenfeng, and Liu, Shan, 2022.
            Influence of Three Gorges Dam on earthquakes based on GRACE gravity field. Open Geosciences, 14(1):350, doi:10.1515/geo-2022-0350.
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- Wang, Liuming, Wang, Junxiao, Li, Mengyao, Wang, Lachun, Li, Xingong, and Zhu, Liping, 2022. Response of terrestrial water
            storage and its change to climate change in the endorheic Tibetan Plateau. Journal of Hydrology, 612:128231, doi:10.1016/j.jhydrol.2022.128231.
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- Wang, Dongzhen, Zhao, Bin, Li, Yu, Yu, Jiansheng, Chen, Yi, and Zhou, Xiaohui, 2022. Determination of tectonic and nontectonic
            vertical motion rates of the North China Craton using dense GPS and GRACE data. Journal of Asian Earth Sciences, 236:105314,
            doi:10.1016/j.jseaes.2022.105314.
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- Wang, Song-Yun, Li, Jin, Chen, Jianli, and Hu, Xiao-Gong, 2022. On the Improvement of Mass Load Inversion With GNSS Horizontal
            Deformation: A Synthetic Study in Central China. Journal of Geophysical Research (Solid Earth), 127(10):e2021JB023696,
            doi:10.1029/2021JB023696.
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- Wang, Kan, El-Mowafy, Ahmed, and Yang, Xuhai, 2022. URE and URA for predicted LEO satellite orbits at different altitudes.
            Advances in Space Research, 70(8):2412–2423, doi:10.1016/j.asr.2022.08.039.
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- Wang, Guodong, He, Yongli, Huang, Jianping, Guan, Xiaodan, Wang, Xiaoxia, Hu, Huancui, Wang, Shanshan, and Xie, Yongkun, 2022.
            The Influence of Precipitation Phase Changes on the Recharge Process of Terrestrial Water Storage in the Cold Season Over
            the Tibetan Plateau. Journal of Geophysical Research (Atmospheres), 127(4):e2021JD035824, doi:10.1029/2021JD035824.
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- Wang, Pengfei, Wang, Song-Yun, Li, Jin, Chen, Jianli, and Qi, Zhaoxiang, 2023. Comparison of GRACE/GRACE-FO Spherical Harmonic
            and Mascon Products in Interpreting GNSS Vertical Loading Deformations over the Amazon Basin. Remote Sensing, 15(1):252,
            doi:10.3390/rs15010252.
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- Wang, Kan, Liu, Jiawei, Su, Hang, El-Mowafy, Ahmed, and Yang, Xuhai, 2022. Real-Time LEO Satellite Orbits Based on Batch Least-Squares
            Orbit Determination with Short-Term Orbit Prediction. Remote Sensing, 15(1):133, doi:10.3390/rs15010133.
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- Wang, Ziyun, Zhang, Bao, Yao, Yibin, and Zhang, Wei, 2023. GRACE and mass budget method reveal decelerated ice loss in east
            Greenland in the past decade. Remote Sensing of Environment, 286:113450, doi:10.1016/j.rse.2023.113450.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Chen, Tianyi, 2023. One-degree resolution mascon solution over Antarctic derived
            from GRACE Level-2 data. Frontiers in Earth Science, 11:1129628, doi:10.3389/feart.2023.1129628.
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- Wang, Youcun, Li, Min, Jiang, Kecai, Li, Wenwen, Zhao, Qile, Fang, Rongxin, Wei, Na, and Mu, Renhai, 2023. Improving Precise
            Orbit Determination of LEO Satellites Using Enhanced Solar Radiation Pressure Modeling. Space Weather, 21(1):e2022SW003292,
            doi:10.1029/2022SW003292.
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- Wang, Shan, Cui, Geng, Li, Xiaojie, Liu, Yan, Li, Xiaofeng, Tong, Shouzheng, and Zhang, Mingye, 2023. GRACE Satellite-Based
            Analysis of Spatiotemporal Evolution and Driving Factors of Groundwater Storage in the Black Soil Region of Northeast China.
            Remote Sensing, 15(3):704, doi:10.3390/rs15030704.
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- Wang, Xuecheng, Zheng, Hua, Zhu, Xiao-Hua, Zhao, Ruixiang, Wang, Min, Chen, Juntian, Ma, Yunlong, Nan, Feng, and Yu, Fei,
            2023. Validation and Evaluation of GRACE-FO Estimates with In Situ Bottom Pressure Array Measurements in the South China Sea.
            Remote Sensing, 15(11):2804, doi:10.3390/rs15112804.
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- Wang, Shusen, Li, Junhua, and Russell, Hazen A. J., 2023. Methods for Estimating Surface Water Storage Changes and Their
            Evaluations. Journal of Hydrometeorology, 24(3):445–461, doi:10.1175/JHM-D-22-0098.1.
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- Wang, Kan, El-Mowafy, Ahmed, and Yang, Xuhai, 2023. LEO Satellite Clock Modeling and Its Benefits for LEO Kinematic POD. Remote
            Sensing, 15(12):3149, doi:10.3390/rs15123149.
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- Wang, Jie, Xu, Duanyang, and Li, Hongfei, 2023. Constructing GRACE-Based 1 km Resolution Groundwater Storage Anomalies in
            Arid Regions Using an Improved Machine Learning Downscaling Method: A Case Study in Alxa League, China. Remote Sensing,
            15(11):2913, doi:10.3390/rs15112913.
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- Wang, Lin, Huang, Gang, Chen, Wen, and Wang, Ting, 2023. Super Drought under Global Warming: Concept, Monitoring Index, and
            Validation. Bulletin of the American Meteorological Society, 104(5):E943–E969, doi:10.1175/BAMS-D-22-0182.1.
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- Wang, Hongbo, Zhang, Mingjiang, and Xiong, Jianning, 2023. Effects of Solar Extreme Ultraviolet Radiation on Thermospheric
            Neutral Density (in Chinese). Chinese Journal of Space Science, 43(1):87–100, doi:10.11728/cjss2023.01.211217130.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Wang, Fengwei, 2024. High-resolution mascon solutions reveal glacier-scale mass
            changes over the Greenland Ice Sheet from 2002 to 2022. Geophysical Journal International, 236(1):494–515, doi:10.1093/gji/ggad439.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Wang, Fengwei, 2023. Unprecedented mass gain over the Antarctic ice sheet between
            2021 and 2022 caused by large precipitation anomalies. Environmental Research Letters, 18(12):124012, doi:10.1088/1748-9326/ad0863.
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- Wang, Fei, Lai, Hexin, Li, Yanbin, Feng, Kai, Tian, Qingqing, Guo, Wenxian, Qu, Yanping, and Yang, Haibo, 2023. Spatio-temporal
            evolution and teleconnection factor analysis of groundwater drought based on the GRACE mascon model in the Yellow River Basin.
            Journal of Hydrology, 626:130349, doi:10.1016/j.jhydrol.2023.130349.
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- Wang, Mingxiu, Wyatt, Briana M., and Ochsner, Tyson E., 2023. Accurate statistical seasonal streamflow forecasts developed
            by incorporating remote sensing soil moisture and terrestrial water storage anomaly information. Journal of Hydrology,
            626:130154, doi:10.1016/j.jhydrol.2023.130154.
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- Wang, Linju, Zhang, Menglin, Yin, Wenjie, Li, Yi, Hu, Litang, and Fan, Linlin, 2023. Improved Drought Characteristics in the
            Pearl River Basin Based on Reconstructed GRACE Solution with Enhanced Temporal Resolution. Remote Sensing, 15(19):4849,
            doi:10.3390/rs15194849.
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- Wang, Hong-bo, Zhang, Ming-jiang, and Xiong, Jian-ning, 2023. Thermospheric Mass Densities' Response to the Solar Radiation's
            Short-term Variation with 27-d Period. Progress in Astronomy, 41:401–414, doi:10.3969/j.issn.1000-8349.2023.03.08.
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- Wang, Jielong, Yang, Ling, Shen, Yunzhong, and Chen, Qiujie, 2024. Total water storage anomalies reconstruction using noise-augmented
            u-shaped network: A case study in the Yangtze River Basin. Computers and Geosciences, 183:105498, doi:10.1016/j.cageo.2023.105498.
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- Wang, Jingqi, Ding, Kaihua, Chen, Xiaodong, Guo, Rumeng, and Sun, Heping, 2023. Influence of South-to-North Water Diversion
            on Land Subsidence in North China Plain Revealed by Using Geodetic Measurements. Remote Sensing, 16(1):162, doi:10.3390/rs16010162.
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- Wang, Bowen, Meng, Xiangguang, Sun, Yueqiang, Männel, Benjamin, Wickert, Jens, Bai, Weihua, and Tang, Longjiang, 2024.
            Impact of solar activity on thermospheric mass density response: Observations from GRACE-FO. Advances in Space Research,
            73(9):4546–4560, doi:10.1016/j.asr.2024.02.012.
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- Wang, Zhizhao, Yang, Shuju, Jia, Fuling, Wu, Kaihang, Liao, Fangjie, Duan, Huizong, and Yeh, Hsien-Chi, 2024. Alternative
            Approach to Tilt-to-Length Coupling Estimation for Laser Ranging Interferometers in Future Gravity Missions. Remote Sensing,
            16(5):862, doi:10.3390/rs16050862.
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- Wang, H. B., Zhang, M. J., and Xiong, J. N., 2024. The Feature Analysis and Modeling of Upper Atmospheric Midnight
            Density Maximum. Acta Astronomica Sinica, 65(1):9, doi:10.15940/j.cnki.0001-5245.2024.01.009.
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- Wang, Aoming, Gu, Defeng, Huang, Zhiyong, Liu, Chaoqun, Shao, Kai, and Tong, Lisheng, 2024. GRACE-FO attitude determination:
            Star camera installation matrix calibration and incremental quaternion integrator. Acta Astronautica, 219:774–784,
            doi:10.1016/j.actaastro.2024.03.073.
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- Wang, Yu, Han, Tian, Yang, Yuze, Hai, Yue, Wen, Zhi, Li, Ruonan, and Zheng, Hua, 2024. Revealing the Hidden Consequences of
            Increased Soil Moisture Storage in Greening Drylands. Remote Sensing, 16(10):1819, doi:10.3390/rs16101819.
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- Wang, Mengran, Yao, Jiaqi, Mo, Fan, and Xu, Nan, 2024. Spatiotemporal Coupling Analysis Of Surface Water And Groundwater In
            Tibet Based On Multi-Source Sensors. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information
            Sciences, 481:663–669, doi:10.5194/isprs-archives-XLVIII-1-2024-663-2024.
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- Wang, Chao, Jiang, Shijie, Zheng, Yi, Han, Feng, Kumar, Rohini, Rakovec, Oldrich, and Li, Siqi, 2024. Distributed Hydrological
            Modeling With Physics-Encoded Deep Learning: A General Framework and Its Application in the Amazon. Water Resources Research,
            60(4):e2023WR036170, doi:10.1029/2023WR036170.
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- Wang, Yiming, Li, Chen, Cui, Yingjie, Cui, Yanhong, Xu, Yuancheng, Hora, Tejasvi, Zaveri, Esha, Rodella, Aude-Sophie, Bai,
            Liangliang, and Long, Di, 2024. Spatial downscaling of GRACE-derived groundwater storage changes across diverse climates and
            human interventions with Random Forests. Journal of Hydrology, 640:131708, doi:10.1016/j.jhydrol.2024.131708.
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- Wang, Jian, Gu, Defeng, Yin, Heng, Yang, Xuerong, Wei, Chunbo, and An, Zicong, 2024. Research on Inter-Satellite Laser Ranging
            Scale Factor Estimation Methods for Next-Generation Gravity Satellites. Remote Sensing, 16(14):2523, doi:10.3390/rs16142523.
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- Wang, Fengwei, Zhou, Qing, Gao, Haipeng, Wen, Yanlin, and Zhou, Shijian, 2024. Dynamic Monitoring of Poyang Lake Water Area
            and Storage Changes from 2002 to 2022 via Remote Sensing and Satellite Gravimetry Techniques. Remote Sensing, 16(13):2408,
            doi:10.3390/rs16132408.
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- Wang, Peng-fei, Wang, Song-yun, Li, Jin, and Qi, Zhao-xiang, 2024. Analysis of the Impact of Bedrock Thermal Expansion on
            Three-Dimensional Surficial Annual Deformation in Southwest China. Progress in Astronomy, 42:315–334, doi:10.3969/j.issn.1000-8349.2024.02.09.
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- Wang, Yifan, Zhan, Jingang, Shi, Hongling, and Chen, Jianli, 2024. Interannual Glacial Mass Changes in High Mountain Asia
            and Connections to Climate Variability. Remote Sensing, 16(18):3426, doi:10.3390/rs16183426.
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- Wang, Jiamei, Ouyang, Wei, Liu, Xinyi, and Wang, Lei, 2023. Monitoring hydrological changes with satellite data: Spring thaw's
            effect on soil moisture and groundwater in seasonal Freezing-Thawing zones. Journal of Hydrology, 626:130365, doi:10.1016/j.jhydrol.2023.130365.
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- Wang, Jielong, Awange, Joseph, Shen, Yunzhong, Yang, Ling, Feng, Tengfei, and Song, Yongze, 2024. Reconstructed centennial
            precipitation-driven water storage anomalies in the Nile River Basin using RecNet and their suitability for studying ENSO
            and IOD impacts. Journal of Hydrology, 645:132272, doi:10.1016/j.jhydrol.2024.132272.
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- Wang, Jielong, Shen, Yunzhong, and Awange, Joseph, 2024. Generating Long-Term Grace-Like Total Water Storage Change Products
            Using Conditional Generative Adversarial Networks. ISPRS Annals of Photogrammetry, Remote Sensing and Spatial Information
            Sciences, X:389–394, doi:10.5194/isprs-annals-X-4-2024-389-2024.
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- Wang, Jielong, Shen, Yunzhong, Awange, Joseph L., and Yang, Ling, 2023. A deep learning model for reconstructing centenary
            water storage changes in the Yangtze River Basin. Science of the Total Environment, 905:167030, doi:10.1016/j.scitotenv.2023.167030.
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- Wang, Wei, Shen, Yunzhong, Chen, Qiujie, and Wang, Fengwei, 2024. High-Spatial Resolution Mascon Solution Over High Mountain
            Asia Constrained by Multisource Prior Information. IEEE Journal of Selected Topics in Applied Earth Observations and Remote
            Sensing, 17:13030–13046, doi:10.1109/JSTARS.2024.3429328.
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- Wang, Hansheng, Wu, Patrick, and van der Wal, Wouter, 2008. Using postglacial sea level, crustal velocities and gravity-rate-of-change
            to constrain the influence of thermal effects on mantle lateral heterogeneities. Journal of Geodynamics, 46(3):104–117,
            doi:10.1016/j.jog.2008.03.003.
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- Xiong, C., Lühr, H., and Ma, S. Y., 2013. The subauroral electron density trough: Comparison between satellite observations
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- Xiong, C. and Lühr, H., 2013. Nonmigrating tidal signatures in the magnitude and the inter-hemispheric asymmetry of the
            equatorial ionization anomaly. Annales Geophysicae, 31:1115–1130, doi:10.5194/angeo-31-1115-2013.
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- Xiong, C., Lühr, H., and Ma, S. Y., 2013. The magnitude and inter-hemispheric asymmetry of equatorial ionization
            anomaly-based on CHAMP and GRACE observations. Journal of Atmospheric and Solar-Terrestrial Physics, 105:160–169,
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- Xiong, C. and Lühr, H., 2014. The Midlatitude Summer Night Anomaly as observed by CHAMP and GRACE: Interpreted as tidal
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- Xiong, C., Zhou, Y.-L., Lühr, H., and Ma, S.-Y., 2015. Tidal signatures of the thermospheric mass density and zonal wind
            at midlatitude: CHAMP and GRACE observations. Annales Geophysicae, 33:185–196, doi:10.5194/angeo-33-185-2015.
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- Xiong, C., Lühr, H., Ma, S., and Schlegel, K., 2015. Validation of GRACE electron densities by incoherent scatter radar
            data and estimation of plasma scale height in the topside ionosphere. Advances in Space Research, 55:2048–2057,
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- Xiong, Y., 2011. The calibration research for GRACE accelerometer (Chinese). Scientia Sinica Physica, Mechanica \& Astronomica,
            41:1319, doi:10.1360/132010-1234.
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- Xiong, Jinghua, Yin, Jiabo, Guo, Shenglian, and Slater, Louise, 2021. Continuity of terrestrial water storage variability
            and trends across mainland China monitored by the GRACE and GRACE-Follow on satellites. Journal of Hydrology, 599:126308,
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- Xiong, Jinghua, Guo, Shenglian, Yin, Jiabo, Gu, Lei, and Xiong, Feng, 2021. Using the Global Hydrodynamic Model and GRACE
            Follow-On Data to Access the 2020 Catastrophic Flood in Yangtze River Basin. Remote Sensing, 13(15):3023, doi:10.3390/rs13153023.
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- Xiong, Jinghua, Yin, Jiabo, Guo, Shenglian, Gu, Lei, Xiong, Feng, and Li, Na, 2021. Integrated flood potential index for flood
            monitoring in the GRACE era. Journal of Hydrology, 603:127115, doi:10.1016/j.jhydrol.2021.127115.
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- Xiong, Chao, Stolle, Claudia, Michaelis, Ingo, Lühr, Hermann, Zhou, Yunliang, Wang, Hui, Kervalishvili, Guram, and Rauberg,
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- Xiong, Jinghua, Guo, Shenglian, Chen, Deliang, Zhong, Yulong, Liu, Bingshi, Abhishek, and Yin, Jiabo, 2022. Past and future
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- Xiong, Jinghua, Guo, Shenglian, Abhishek, Li, Jun, and Yin, Jiabo, 2022. A Novel Standardized Drought and Flood Potential
            Index Based on Reconstructed Daily GRACE Data. Journal of Hydrometeorology, 23(9):1419–1438, doi:10.1175/JHM-D-22-0011.1.
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- Xiong, Yuhao, Feng, Wei, Zhou, Xin, Kusche, Jürgen, Shen, Yingchun, Yang, Meng, Wang, Changqing, and Zhong, Min, 2024.
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- Xiong, Jinghua, Guo, Shenglian, and Yin, Jiabo, 2021. Discharge Estimation Using Integrated Satellite Data and Hybrid Model
            in the Midstream Yangtze River. Remote Sensing, 13(12):2272, doi:10.3390/rs13122272.
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- Xiong, Yuhao, Feng, Wei, Chen, Jianli, Shen, Yingchun, Bai, Hongbing, Jiang, Zhongshan, and Zhong, Min, 2025. Refined GRACE/GFO-Derived
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- Xiong, Yuhao, Feng, Wei, Bai, Hongbing, Chen, Wei, Jiang, Zhongshan, and Zhong, Min, 2025. High-Resolution Terrestrial Water
            Storage Anomalies and Components in China From GRACE/GFO via Joint Inversion Downscaling. Water Resources Research,
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         - Xu, P., 2008. Position and velocity perturbations for the determination of geopotential from space geodetic measurements.
            Celestial Mechanics and Dynamical Astronomy, 100:231–249, doi:10.1007/s10569-008-9117-x.
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- Xu, J., Wang, W., Lei, J., Sutton, E. K., and Chen, G., 2011. The effect of periodic variations of thermospheric density
            on CHAMP and GRACE orbits. Journal of Geophysical Research (Space Physics), 116(A15):2315–+, doi:10.1029/2010JA015995.
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- Xu, J., Wang, W., and Gao, H., 2013. The longitudinal variation of the daily mean thermospheric mass density. Journal of
            Geophysical Research (Space Physics), 118:515–523, doi:10.1029/2012JA017918.
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- Xu, M., Ye, B. S., and Zhao, Q. D., 2013. Terrestrial Water Storge Changes in the Tangnaihai Basin Measured by GRACE
            during 2003-2008, China. Applied Mechanics and Materials, 316:520–526, doi:10.4028/www.scientific.net/AMM.316-317.520.
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- Xu, Z., Schrama, E., and van der Wal, W., 2015. Optimization of regional constraints for estimating the Greenland mass balance
            with GRACE level-2 data. Geophysical Journal International, 202:381–393, doi:10.1093/gji/ggv146.
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- Xu, Z., Schrama, E. J. O., van der Wal, W., van den Broeke, M., and Enderlin, E. M., 2016. Improved GRACE regional
            mass balance estimates of the Greenland ice sheet cross-validated with the input-output method. The Cryosphere, 10:895–912,
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- Xu, C., Su, X., Liu, T., and Sun, W., 2017. Geodetic observations of the co- and post-seismic deformation of the 2013 Okhotsk
            Sea deep-focus earthquake. Geophysical Journal International, 209:1924–1933, doi:10.1093/gji/ggx123.
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- Xu, P., 2018. Measurement-based perturbation theory and differential equation parameter estimation with applications to satellite
            gravimetry. Communications in Nonlinear Science and Numerical Simulations, 59:515–543, doi:10.1016/j.cnsns.2017.11.021.
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- Xu, Lei, Chen, Nengcheng, Zhang, Xiang, and Chen, Zeqiang, 2019. Spatiotemporal Changes in China's Terrestrial Water Storage
            From GRACE Satellites and Its Possible Drivers. Journal of Geophysical Research (Atmospheres), 124(22):11,976–11,993,
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- Xu, Yuyue, Li, Jin, Wang, Jida, Chen, Jianli, Liu, Yuanbo, Ni, Shengnan, Zhang, Zizhan, and Ke, Changqing, 2020. Assessing
            water storage changes of Lake Poyang from multi-mission satellite data and hydrological models. Journal of Hydrology,
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- Xu, Xiao-li and Xiong, Yong-qing, 2021. The influence of tesseral harmonic J$_22$ term on the TLE orbit error of low polar
            orbit satellite. Astrophysics and Space Science, 366(1):5, doi:10.1007/s10509-020-03916-0.
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- Xu, Zhicheng, Cheng, Lei, Liu, Pan, Makarieva, Olga, and Chen, Menghan, 2021. Detecting and quantifying the impact of long-term
            terrestrial water storage changes on the runoff ratio in the head regions of the two largest rivers in China. Journal of
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- Xu, Ming, Wan, Xiaoyun, Chen, Runjing, Wu, Yunlong, and Wang, Wenbing, 2021. Evaluation of GRACE/GRACE Follow-On Time-Variable
            Gravity Field Models for Earthquake Detection above Mw8.0s in Spectral Domain. Remote Sensing, 13(16):3075, doi:10.3390/rs13163075.
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- Xu, Yi, Gong, Huili, Chen, Beibei, Zhang, Qingquan, and Li, ZhenZhen, 2021. Long-term and seasonal variation in groundwater
            storage in the North China Plain based on GRACE. International Journal of Applied Earth Observation and Geoinformation,
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- Xu, Fenglin, Zhang, Guoqing, Yi, Shuang, and Chen, Wenfeng, 2022. Seasonal trends and cycles of lake-level variations over
            the Tibetan Plateau using multi-sensor altimetry data. Journal of Hydrology, 604:127251, doi:10.1016/j.jhydrol.2021.127251.
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- Xu, Pengfei, Jiang, Tao, Zhang, Chuanyin, Shi, Ke, and Li, Wanqiu, 2022. Recovering Regional Groundwater Storage Anomalies
            by Combining GNSS and Surface Mass Load Data: A Case Study in Western Yunnan. Remote Sensing, 14(16):4032, doi:10.3390/rs14164032.
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- Xu, Li, Ferris, David, Huggins, Xander, Wong, Jefferson S., Mohan, Chinchu, Sadri, Sara, Chandanpurkar, Hrishikesh A., Sanyal,
            Palash, and Famiglietti, James S., 2023. From coarse resolution to practical solution: GRACE as a science communication and
            policymaking tool for sustainable groundwater management. Journal of Hydrology, 623:129845, doi:10.1016/j.jhydrol.2023.129845.
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- Xu, Qinbo, Zhou, Chun, Zhang, Linlin, Wang, Fan, Zhao, Wei, and Hu, Dunxin, 2023. Variability of the Deep Western Boundary
            Current in the Northern Philippine Sea. Journal of Physical Oceanography, 53(8):2029–2041, doi:10.1175/JPO-D-23-0025.1.
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- Xu, Ming, Wan, Xiaoyun, Zhang, Xiangyu, and Yu, Hangtao, 2023. Difference analysis of ice sheet mass balance retrieved from
            various Gravity Recovery and Climate Experiment time-variable gravity field models: a case study in Antarctica and Greenland.
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- Xu, Guodong, Wu, Yunlong, Liu, Sulan, Cheng, Siyu, Zhang, Yi, Pan, Yuanjin, Wang, Lunche, Yu. Dokuchits, Emilia, and Nkwazema,
            Oscar C., 2023. How 2022 extreme drought influences the spatiotemporal variations of terrestrial water storage in the Yangtze
            River Catchment: Insights from GRACE-based drought severity index and in-situ measurements. Journal of Hydrology, 626:130245,
            doi:10.1016/j.jhydrol.2023.130245.
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- Xu, Yuyue, Gun, Zhao, Zhao, Jianwei, Chen, Jianli, Liu, Qing, Cheng, Xing, Sutanudjaja, Edwin H., Wang, Jida, Liu, Hehua,
            and Zhan, Wenfeng, 2023. Continuing Severe Water Shortage in the Water-Receiving Area of the South-To-North Water Diversion
            Eastern Route Project From 2002 to 2020. Water Resources Research, 59(10):e2022WR034365, doi:10.1029/2022WR034365.
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- Xu, Yuyue, Zhu, Xiaoyun, Cheng, Xing, Gun, Zhao, Lin, Jing, Zhao, Jianwei, Yao, Ling, and Zhou, Chenghu, 2022. Drought assessment
            of China in 2002-2017 based on a comprehensive drought index. Agricultural and Forest Meteorology, 319:108922, doi:10.1016/j.agrformet.2022.108922.
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- Xu, CanCan, Chen, Fang, Huang, ChengLi, Zhou, YongHong, Shi, QiQi, Duan, PengShuo, and Xu, XueQing, 2024. Cryospheric Excitation
            on the Earth's Chandler Wobble and Implications From a Warming World. Geophysical Research Letters, 51(12):e2024GL108992,
            doi:10.1029/2024GL108992.
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- Xu, Pengfei, Jiang, Tal, Li, Wanqiu, Xu, Gong, Zhang, CChaunyin, Wang, Wei, Tian, KKunjun, and Feng, Jiandi, 2024. Analyzing
            the Seasonal Vertical Displacement Fluctuations Using the Global Navigation Satellite System and Hydrological Load: A Case
            Study of the Western Yunnan Region. Water, 16(9):1260, doi:10.3390/w16091260.
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- Xu, Jiyao, Wang, Wenbin, Zhang, Shunrong, Liu, Xiao, and Yuan, Wei, 2015. Multiday thermospheric density oscillations associated
            with variations in solar radiation and geomagnetic activity. Journal of Geophysical Research (Space Physics), 120(5):3829–3846,
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- Xu, Xinyu, Ding, Hao, Zhao, Yongqi, Li, Jin, and Hu, Minzhang, 2019. GOCE-Derived Coseismic Gravity Gradient Changes Caused
            by the 2011 Tohoku-Oki Earthquake. Remote Sensing, 11(11):1295, doi:10.3390/rs11111295.
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- Xu, Pengfei, Jiang, Tao, Zhang, Chuanyin, Qu, Guoqing, Zhang, Hanwei, and Li, Wanqiu, 2025. Temporal variations of the geoid
            and dynamic maintenance of height reference frame using surface mass loading and GRACE/GRACE-FO data. Geophysical Journal
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         - Xue, Liang, Fu, Yuning, and Martens, Hilary R., 2021. Seasonal hydrological loading in the Great Lakes region detected by
            GNSS: a comparison with hydrological models. Geophysical Journal International, 226(2):1174–1186, doi:10.1093/gji/ggab158.
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- Xue, Dongping, Gui, Dongwei, Ci, Mengtao, Liu, Qi, Wei, Guanghui, and Liu, Yunfei, 2024. Spatial and temporal downscaling
            schemes to reconstruct high-resolution GRACE data: A case study in the Tarim River Basin, Northwest China. Science of the
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- Xue, Huazhu, Wang, Hao, Dong, Guotao, and Li, Zhi, 2025. Spatial Downscaling of GRACE Groundwater Storage Based on DTW Distance
            Clustering and an Analysis of Its Driving Factors. Remote Sensing, 17(14):2526, doi:10.3390/rs17142526.
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         - Yılmaz, Yeliz A., Aalstad, Kristoffer, and Sen, Omer L., 2019. Multiple Remotely Sensed Lines of Evidence for a Depleting
            Seasonal Snowpack in the Near East. Remote Sensing, 11(5):483, doi:10.3390/rs11050483.
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         - Yamamoto, K., Otsubo, T., Kubo-oka, T., and Fukuda, Y., 2005. A simulation study of effects of GRACE orbit decay on the gravity
            field recovery. Earth Planets Space, 57:291–295, doi:10.1186/BF03352565.
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- Yamamoto, K., Fukuda, Y., Nakaegawa, T., and Nishijima, J., 2007. Landwater variation in four major river basins of the Indochina
            peninsula as revealed by GRACE. Earth, Planets and Space, 59:193–200, doi:10.1186/BF03353095.
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- Yamamoto, Keiko, Fukuda, Yoichi, Doi, Koichiro, and Motoyama, Hideaki, 2008. Interpretation of the GRACE-derived mass trend
            in Enderby Land, Antarctica. Polar Science, 2(4):267–276, doi:10.1016/j.polar.2008.10.001.
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- Yamamoto, K., Hasegawa, T., Fukuda, Y., Nakaegawa, T., and Taniguchi, M., 2009. Improvement of JLG terrestrial water storage
            model using GRACE    satellite gravity data. In Taniguchi, M., Burnett, W. C., Fukushima, Y., Haigh, M., and Umezawa, Y. (editors),
            From Headwaters to the Ocean, pp. 369–374, Taylor and Francis Group, London.
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- Yamamoto, K., Fukuda, Y., and Doi, K., 2011. Interpretation of GIA and ice-sheet mass trends over Antarctica using GRACE and
            ICESat data as a constraint to GIA models. Tectonophysics, 511:69–78, doi:10.1016/j.tecto.2010.11.010.
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- Yamamoto, T., 2012. Design and Performance Analysis of GPS Based Precise Relative Navigation for Rendezvous and Formation
            Flying Missions in Low Earth Orbit. Transactions of the Japanese Society for Artificial Intelligence, Aerospace Technology
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         - Yamazaki, Y., Kosch, M. J., and Sutton, E. K., 2015. A model of high-latitude thermospheric density. Journal
            of Geophysical Research (Space Physics), 120:7903–7917, doi:10.1002/2015JA021371.
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         - Yan, H., Chen, W., and Yuan, L., 2016. Crustal vertical deformation response to different spatial scales of GRACE and GCMs
            surface loading. Geophysical Journal International, 204:505–516, doi:10.1093/gji/ggv385.
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- Yan, Yihao, Müller, Vitali, Heinzel, Gerhard, and Zhong, Min, 2021. Revisiting the light time correction in gravimetric
            missions like GRACE and GRACE follow-on. Journal of Geodesy, 95(5):48, doi:10.1007/s00190-021-01498-5.
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- Yan, Xiao, Zhang, Bao, Yao, Yibin, Yang, Yuanjian, Li, Junyu, and Ran, Qishun, 2021. GRACE and land surface models reveal
            severe drought in eastern China in 2019. Journal of Hydrology, 601:126640, doi:10.1016/j.jhydrol.2021.126640.
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- Yan, Sheng, Liu, Jianyu, Gu, Xihui, and Kong, Dongdong, 2021. Global Runoff Signatures Changes and Their Response to Atmospheric
            Environment, GRACE Water Storage, and Dams. Remote Sensing, 13(20):4084, doi:10.3390/rs13204084.
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- Yan, Xiao, Zhang, Bao, Yao, Yibin, Yin, Jiabo, Wang, Hansheng, and Ran, Qishun, 2022. Jointly using the GLDAS 2.2 model and
            GRACE to study the severe Yangtze flooding of 2020. Journal of Hydrology, 610:127927, doi:10.1016/j.jhydrol.2022.127927.
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- Yan, Zhengwen, Ran, Jiangjun, Xiao, Yun, Xu, Zheyu, Wu, Haotian, Deng, Xiao-Le, Du, Lan, and Zhong, Min, 2023. The Temporal
            Improvement of Earth's Mass Transport Estimated by Coupling GRACE-FO With a Chinese Polar Gravity Satellite Mission. Journal
            of Geophysical Research (Solid Earth), 128(9):e2023JB027157, doi:10.1029/2023JB027157.
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- Yan, Jun, Dong, Danan, Bürgmann, Roland, Materna, Kathryn, Tan, Weijie, Peng, Yu, and Chen, Junping, 2019. Separation
            of Sources of Seasonal Uplift in China Using Independent Component Analysis of GNSS Time Series. Journal of Geophysical
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- Yan, Feng, Zhang, Yuwen, Wang, Xinpeng, Xu, Zheng, Liang, Yuebing, Wang, Zongchao, Wang, Jiaxin, Chen, Yaheng, and Zhu, Zhenzhou,
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- Yan, Yingjie, Su, Yuan, Zhou, Hongfei, Wang, Siyu, Yao, Linlin, and Batmunkh, Dashlkham, 2025. Anthropogenic and Climate-Induced
            Water Storage Dynamics over the Past Two Decades in the China-Mongolia Arid Region Adjacent to Altai Mountain. Remote Sensing,
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- Yan, Yihao, Wang, Changqing, Müller, Laura, Wegener, Henry, Heinzel, Gerhard, and Müller, Vitali, 2025. Re-analysing
            the data processing of the K-band ranging system on GRACE Follow-On. Journal of Geodesy, 99(10):80, doi:10.1007/s00190-025-01988-w.
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- Yan, Zhengwen, Ran, Jiangjun, Ditmar, Pavel, Shum, C. K., Klees, Roland, Smith, Patrick, and Fettweis, Xavier, 2025.
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         - Yang, Z.-J., Precise determination of local geoid and its geophysical interpretation. Ph.D. Thesis, Hong Kong Polytechnic
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- Yang, T., Wang, C., Yu, Z., and Xu, F., 2013. Characterization of spatio-temporal patterns for various GRACE- and GLDAS-born
            estimates for changes of global terrestrial water storage. Global and Planetary Change, 109:30–37, doi:10.1016/j.gloplacha.2013.07.005.
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- Yang, K., Wu, H., Chen, Y., Qin, J., and Wang, L., 2014. Toward a satellite-based observation of atmospheric heat source over
            land. Journal of Geophysical Research (Atmospheres), 119:3124–3133, doi:10.1002/2013JD021091.
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- Yang, X., Li, J., and Zhang, S., 2014. Ionospheric correction for spaceborne single-frequency GPS based on single layer model.
            Journal of Earth System Science, 123:767–778, doi:10.1007/s12040-014-0442-z.
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- Yang, Y., Yue, X., Yuan, J., and Rizos, C., 2014. Enhancing the kinematic precise orbit determination of low earth orbiters
            using GPS receiver clock modelling. Advances in Space Research, 54:1901–1912, doi:10.1016/j.asr.2014.07.016.
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- Yang, Y.-M., Meng, X., Komjathy, A., Verkholyadova, O., Langley, R. B., Tsurutani, B. T., and Mannucci, A. J.,
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- Yang, Y., Long, D., Guan, H., Scanlon, B. R., Simmons, C. T., Jiang, L., and Xu, X., 2014. GRACE satellite observed
            hydrological controls on interannual and seasonal variability in surface greenness over mainland Australia. Journal of
            Geophysical Research (Biogeosciences), 119:2245–2260, doi:10.1002/2014JG002670.
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- Yang, P. and Chen, Y., 2015. An analysis of terrestrial water storage variations from GRACE and GLDAS: The Tianshan Mountains
            and its adjacent areas, central Asia. Quaternary International, 358:106–112, doi:10.1016/j.quaint.2014.09.077.
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- Yang, Q., Dixon, T. H., Myers, P. G., Bonin, J., Chambers, D., and van den Broeke, M. R., 2016. Recent increases
            in Arctic freshwater flux affects Labrador Sea convection and Atlantic overturning circulation. Nature Communications,
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- Yang, T., Wang, C., Chen, Y., Chen, X., and Yu, Z., 2015. Climate change and water storage variability over an arid endorheic
            region. Journal of Hydrology, 529:330–339, doi:10.1016/j.jhydrol.2015.07.051.
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- Yang, Q., Applications of Satellite Geodesy in Environmental and Climate Change. Ph.D. Thesis, University of South Florida,
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- Yang, P., Xia, J., Zhan, C., Qiao, Y., and Wang, Y., 2017. Monitoring the spatio-temporal changes of terrestrial water storage
            using GRACE data in the Tarim River basin between 2002 and 2015. Science of the Total Environment, 595:218–228,
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- Yang, F., Kusche, J., Forootan, E., and Rietbroek, R., 2017. Passive-ocean radial basis function approach to improve temporal
            gravity recovery from GRACE observations. Journal of Geophysical Research (Solid Earth), 122:6875–6892, doi:10.1002/2016JB013633.
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- Yang, F., Forootan, E., Schumacher, M., Shum, C., and Zhong, M., 2018. Evaluating non-tidal atmospheric products by measuring
            GRACE K-band range rate residuals. Geophysical Journal International, 215:1132–1147, doi:10.1093/gji/ggy340.
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- Yang, Yuande, Li, Fei, Hwang, Cheinway, Ding, Minghu, and Ran, Jiangjun, 2019. Space-Time Evolution of Greenland Ice Sheet
            Elevation and Mass From Envisat and GRACE Data. Journal of Geophysical Research (Earth Surface), 124(8):2079–2100,
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- Yang, Linqiang and Francis, Oceana Puananilei, 2019. Sea-level rise and vertical land motion on the Islands of Oahu and Hawaii,
            Hawaii. Advances in Space Research, 64(11):2221–2232, doi:10.1016/j.asr.2019.08.028.
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- Yang, Peng, Zhang, Yongyong, Xia, Jun, and Sun, Shangxin, 2020. Identification of drought events in the major basins of Central
            Asia based on a combined climatological deviation index from GRACE measurements. Atmospheric Research, 244:105105,
            doi:10.1016/j.atmosres.2020.105105.
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- Yang, Xinchun, Tian, Siyuan, Feng, Wei, Ran, Jiangjun, You, Wei, Jiang, Zhongshan, and Gong, Xiaoying, 2020. Spatio-Temporal
            Evaluation of Water Storage Trends from Hydrological Models over Australia Using GRACE Mascon Solutions. Remote Sensing,
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- Yang, Yuanyuan, Zhong, Min, Feng, Wei, and Mu, Dapeng, 2021. Detecting Regional Deep Ocean Warming below 2000 meter Based
            on Altimetry, GRACE, Argo, and CTD Data. Advances in Atmospheric Sciences, 38(10):1778–1790, doi:10.1007/s00376-021-1049-3.
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- Yang, Peng, Xia, Jun, Luo, Xiangang, Meng, Lingsheng, Zhang, Shengqing, Cai, Wei, and Wang, Wenyu, 2021. Impacts of climate
            change-related flood events in the Yangtze River Basin based on multi-source data. Atmospheric Research, 263:105819,
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- Yang, Fan, Forootan, Ehsan, Wang, ChangQing, Kusche, Jürgen, and Luo, ZhiCai, 2021. A New 1-Hourly ERA5-Based Atmosphere
            De-Aliasing Product for GRACE, GRACE-FO, and Future Gravity Missions. Journal of Geophysical Research (Solid Earth),
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- Yang, Fan, Liang, Lei, Wang, Changqing, and Luo, Zhicai, 2021. Attitude Determination for GRACE-FO: Reprocessing the Level-1A
            SC and IMU Data. Remote Sensing, 14(1):126, doi:10.3390/rs14010126.
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- Yang, Xinchun, Tian, Siyuan, You, Wei, and Jiang, Zhongshan, 2021. Reconstruction of continuous GRACE/GRACE-FO terrestrial
            water storage anomalies based on time series decomposition. Journal of Hydrology, 603:127018, doi:10.1016/j.jhydrol.2021.127018.
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- Yang, Zhouming, Liu, Xin, Guo, Jinyun, Guo, Hengyang, Li, Guowei, Kong, Qiaoli, and Chang, Xiaotao, 2022. Relative Kinematic
            Orbit Determination for GRACE-FO Satellite by Jointing GPS and LRI. Remote Sensing, 14(4):993, doi:10.3390/rs14040993.
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- Yang, Peng, Wang, Wenyu, Zhai, Xiaoyan, Xia, Jun, Zhong, Yulong, Luo, Xiangang, Zhang, Shengqing, and Chen, Nengcheng, 2022.
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- Yang, Taoli, Yu, Hanwen, and Wang, Yong, 2022. An efficient low-pass-filtering algorithm to de-noise global GRACE data. Remote
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- Yang, Xu, Zhu, Xiaoqian, Weng, Libin, and Yang, Shenggao, 2022. A New Exospheric Temperature Model Based on CHAMP and GRACE
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- Yang, Yichao, Yamamoto, Kohei, Dovale Álvarez, Miguel, Wei, Daikang, Esteban Delgado, Juan José, Müller,
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- Yang, Fan, Luo, ZhiCai, Zhou, Hao, and Kusche, Jürgen, 2022. On study of the Earth topography correction for the GRACE
            surface mass estimation. Journal of Geodesy, 96(12):95, doi:10.1007/s00190-022-01683-0.
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            Gap Between GRACE and GRACE-FO Terrestrial Water Storage Anomalies. Water Resources Research, 59(11):e2022WR034139,
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- Zhang, Z. Z., Lu, Y., and Xsu, H. Z., 2007. Detecting surface geostrophic currents using wavelet filter from satellite
            geodesy. Science in China Series D - Earth Sciences, 50:918–926.
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- Zhang, Z.-Z., Chao, B. F., Lu, Y., and Hsu, H.-T., 2009. An effective filtering for GRACE time-variable gravity: Fan
            filter. Geophysical Research Letters, 36:17311–+, doi:10.1029/2009GL039459.
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- Zhang, G., Yao, T., Xie, H., Kang, S., and Lei, Y., 2013. Increased mass over the Tibetan Plateau: From lakes or glaciers?.
            Geophysical Research Letters, 40:2125–2130, doi:10.1002/grl.50462.
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- Zhang, T. Y. and Jin, S. G., 2013. Estimate of glacial isostatic adjustment uplift rate in the Tibetan Plateau from
            GRACE and GIA models. Journal of Geodynamics, 72:59–66, doi:10.1016/j.jog.2013.05.002.
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- Zhang, X. and Jin, S., 2014. Uncertainties and effects on geocenter motion estimates from global GPS observations. Advances
            in Space Research, 54:59–71, doi:10.1016/j.asr.2014.03.021.
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- Zhang, Z., Chao, B. F., Chen, J., and Wilson, C. R., 2015. Terrestrial water storage anomalies of Yangtze River
            Basin droughts observed by GRACE and connections with ENSO. Global and Planetary Change, 126:35–45, doi:10.1016/j.gloplacha.2015.01.002.
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- Zhang, D., Zhang, Q., Werner, A. D., and Liu, X., 2016. GRACE-Based Hydrological Drought Evaluation of the Yangtze River
            Basin, China. Journal of Hydrometeorology, 17:811–828, doi:10.1175/JHM-D-15-0084.1.
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- Zhang, L., Dobslaw, H., and Thomas, M., 2016. Globally gridded terrestrial water storage variations from GRACE satellite gravimetry
            for hydrometeorological applications. Geophysical Journal International, 206:368–378, doi:10.1093/gji/ggw153.
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- Zhang, L., Dobslaw, H., Stacke, T., Güntner, A., Dill, R., and Thomas, M., 2017. Validation of terrestrial water storage
            variations as simulated by different global numerical models with GRACE satellite observations. Hydrology and Earth System
            Sciences, 21:821–837, doi:10.5194/hess-21-821-2017.
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- Zhang, L., Dobslaw, H., Dahle, C., Sasgen, I., and Thomas, M., 2016. Validation of MPI-ESM Decadal Hindcast Experiments with
            Terrestrial Water Storage Variations as Observed by the GRACE Satellite Mission. Meteorologische Zeitschrift, 25:685–694,
            doi:10.1127/metz/2015/0596.
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- Zhang, Y.-F. and Yang, Z.-L., 2016. Estimating uncertainties in the newly developed multi-source land snow data assimilation
            system. Journal of Geophysical Research (Atmospheres), 121:8254–8268, doi:10.1002/2015JD024248.
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- Zhang, T., Shen, W., Pan, Y., and Luan, W., 2018. Study of seasonal and long-term vertical deformation in Nepal based on GPS
            and GRACE observations. Advances in Space Research, 61:1005–1016, doi:10.1016/j.asr.2017.10.049.
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- Zhang, B., Liu, L., Khan, S. A., van Dam, T., Zhang, E., and Yao, Y., 2017. Transient Variations in Glacial Mass Near
            Upernavik Isstrøm (West Greenland) Detected by the Combined Use of GPS and GRACE Data. Journal of Geophysical Research
            (Solid Earth), 122(B11):10, doi:10.1002/2017JB014529.
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- Zhang, H. and Sun, Y., 2018. Climate-driven seasonal geocenter motion during the GRACE period. Acta Geophysica, .
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- Zhang, B., Zhang, E., Liu, L., Khan, S. A., van Dam, T., Yao, Y., Bevis, M., and Helm, V., 2018. Geodetic measurements
            reveal short-term changes of glacial mass near Jakobshavn Isbræ (Greenland) from 2007 to 2017. Earth and Planetary
            Science Letters, 503:216–226, doi:10.1016/j.epsl.2018.09.029.
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- Zhang, D., Liu, X., and Bai, P., 2019. Assessment of hydrological drought and its recovery time for eight tributaries of the
            Yangtze River (China) based on downscaled GRACE data. Journal of Hydrology, 568:592–603, doi:10.1016/j.jhydrol.2018.11.030.
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- Zhang, B., Liu, L., Khan, S. A., van Dam, T., Bjørk, A. A., Peings, Y., Zhang, E., Bevis, M., Yao, Y., and
            Noël, B., 2019. Geodetic and model data reveal different spatio-temporal patterns of transient mass changes over Greenland
            from 2007 to 2017. Earth and Planetary Science Letters, 515:154–163, doi:10.1016/j.epsl.2019.03.028.
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- Zhang, Lan, Yi, Shuang, Wang, Qiuyu, Chang, Le, Tang, He, and Sun, Wenke, 2019. Evaluation of GRACE mascon solutions for small
            spatial scales and localized mass sources. Geophysical Journal International, 218(2):1307–1321, doi:10.1093/gji/ggz198.
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- Zhang, Yafeng, He, Bin, Guo, Lanlan, and Liu, Daochen, 2019. Differences in Response of Terrestrial Water Storage Components
            to Precipitation over 168 Global River Basins. Journal of Hydrometeorology, 20(9):1981–1999, doi:10.1175/JHM-D-18-0253.1.
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- Zhang, Hong, Zhang, Ling Lei, Li, Jia, An, Rui Dong, and Deng, Yun, 2020. Monitoring the spatiotemporal terrestrial water
            storage changes in the Yarlung Zangbo River Basin by applying the P-LSA and EOF methods to GRACE data. Science of the Total
            Environment, 713:136274, doi:10.1016/j.scitotenv.2019.136274.
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- Zhang, Miao and Yuan, Xing, 2020. Crucial role of natural processes in detecting human influence on evapotranspiration by
            multisource data analysis. Journal of Hydrology, 580:124350, doi:10.1016/j.jhydrol.2019.124350.
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- Zhang, Yafeng, He, Bin, Guo, Lanlan, Liu, Junjie, and Xie, Xiaoming, 2019. The relative contributions of precipitation, evapotranspiration,
            and runoff to terrestrial water storage changes across 168 river basins. Journal of Hydrology, 579:124194, doi:10.1016/j.jhydrol.2019.124194.
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- Zhang, Yongjun, Lin, Xiaomao, Gowda, Prasanna, Brown, David, Zambreski, Zachary, and Kutikoff, Seth, 2019. Recent Ogallala
            Aquifer Region Drought Conditions as Observed by Terrestrial Water Storage Anomalies from GRACE. Journal of the American
            Water Resources Association, 55(6):1370–1381, doi:10.1111/1752-1688.12798.
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- Zhang, Jianxin, Liu, Kai, and Wang, Ming, 2020. Seasonal and Interannual Variations in China's Groundwater Based on GRACE
            Data and Multisource Hydrological Models. Remote Sensing, 12(5):845, doi:10.3390/rs12050845.
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- Zhang, Bao, Liu, Lin, Yao, Yibin, van Dam, Tonie, and Khan, Shfaqat Abbas, 2020. Improving the estimate of the secular variation
            of Greenland ice mass in the recent decades by incorporating a stochastic process. Earth and Planetary Science Letters,
            549:116518, doi:10.1016/j.epsl.2020.116518.
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- Zhang, Lan, Tang, He, Chang, Le, and Sun, Wenke, 2020. Performance of GRACE Mascon Solutions in Studying Seismic Deformations.
            Journal of Geophysical Research (Solid Earth), 125(10):e19510, doi:10.1029/2020JB019510.
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- Zhang, Bao, Yao, Yibin, Liu, Lin, and Yang, Yuanjian, 2021. Interannual ice mass variations over the Antarctic ice sheet from
            2003 to 2017 were linked to El Niño-Southern Oscillation. Earth and Planetary Science Letters, 560:116796, doi:10.1016/j.epsl.2021.116796.
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- Zhang, Chong, Duan, Qingyun, J. -F. Yeh, Pat, Pan, Yun, Gong, Huili, Moradkhani, Hamid, Gong, Wei, Lei, Xiaohui, Liao, Weihong,
            Xu, Lei, Huang, Zhiyong, Zheng, Longqun, and Guo, Xueru, 2021. Sub-regional groundwater storage recovery in North China Plain
            after the South-to-North water diversion project. Journal of Hydrology, 597:126156, doi:10.1016/j.jhydrol.2021.126156.
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- Zhang, Man-Lian, Liu, Libo, and Li, Qiaoling, 2021. Modeling the global ionospheric electron densities based on the EOF decomposition
            of the ionospheric radio occultation observation. Advances in Space Research, 68(5):2218–2232, doi:10.1016/j.asr.2020.09.033.
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- Zhang, Lan, Tang, He, and Sun, Wenke, 2021. Comparison of GRACE and GNSS Seasonal Load Displacements Considering Regional
            Averages and Discrete Points. Journal of Geophysical Research (Solid Earth), 126(8):e21775, doi:10.1029/2021JB021775.
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- Zhang, Keke, Li, Xingxing, Wu, Jiaqi, Yuan, Yongqiang, Li, Xin, Zhang, Xiaohong, and Zhang, Wei, 2021. Precise Orbit Determination
            for LEO Satellites With Ambiguity Resolution: Improvement and Comparison. Journal of Geophysical Research (Solid Earth),
            126(9):e22491, doi:10.1029/2021JB022491.
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- Zhang, Hao, Ding, Jie, Wang, Yushi, Zhou, Dongyang, and Zhu, Qian, 2021. Investigation about the correlation and propagation
            among meteorological, agricultural and groundwater droughts over humid and arid/semi-arid basins in China. Journal of Hydrology,
            603:127007, doi:10.1016/j.jhydrol.2021.127007.
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- Zhang, Chaoyang, Shum, C. K., Bezdek, Ales, Bevis, Michael, de Teixeira da Encarnação, João, Tapley,
            Byron D., Zhang, Yu, Su, Xiaoli, and Shen, Qiang, 2021. Rapid Mass Loss in West Antarctica Revealed by Swarm Gravimetry in
            the Absence of GRACE. Geophysical Research Letters, 48(23):e95141, doi:10.1029/2021GL095141.
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- Zhang, Guoqing, Shen, Wenbin, Fu, Guangyu, Li, Zhangjun, Zhu, Yiqing, and Wang, Ying, 2021. Moho Changes Beneath the Northeastern
            Tibetan Plateau Revealed by Multiple Geodetic Datasets. Journal of Geophysical Research (Solid Earth), 126(11):e22060,
            doi:10.1029/2021JB022060.
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- Zhang, Xu, Li, Jinbao, Dong, Qianjin, Wang, Zifeng, Zhang, Han, and Liu, Xiaofeng, 2022. Bridging the gap between GRACE and
            GRACE-FO using a hydrological model. Science of the Total Environment, 822:153659, doi:10.1016/j.scitotenv.2022.153659.
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- Zhang, Bao, Yao, Yibin, and He, Yulin, 2022. Bridging the data gap between GRACE and GRACE-FO using artificial neural network
            in Greenland. Journal of Hydrology, 608:127614, doi:10.1016/j.jhydrol.2022.127614.
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- Zhang, Panpan, Li, Zhicai, Bao, Lifeng, Zhang, Peng, Wang, Yongshang, Wu, Lin, and Wang, Yong, 2022. The Refined Gravity Field
            Models for Height System Unification in China. Remote Sensing, 14(6):1437, doi:10.3390/rs14061437.
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- Zhang, Tengxu, Shen, Ziyu, He, Lin, Shen, Wen-Bin, and Li, Wei, 2022. Strain Field Features and Three-Dimensional Crustal
            Deformations Constrained by Dense GRACE and GPS Measurements in NE Tibet. Remote Sensing, 14(11):2638, doi:10.3390/rs14112638.
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- Zhang, Chuanhui, Lv, Aifeng, Jia, Shaofeng, and Qi, Shanshan, 2022. Longterm multisource satellite data fusion reveals dynamic
            expansion of lake water area and storage in a hyperarid basin of China. Journal of Hydrology, 610:127888, doi:10.1016/j.jhydrol.2022.127888.
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- Zhang, Xueliang, Ren, Li, and Feng, Wei, 2022. Comparison of the shallow groundwater storage change estimated by a distributed
            hydrological model and GRACE satellite gravimetry in a well-irrigated plain of the Haihe River basin, China. Journal of
            Hydrology, 610:127799, doi:10.1016/j.jhydrol.2022.127799.
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- Zhang, Zhengang, Song, Changchun, Guo, Yuedong, He, Panxing, Chen, Ning, Liu, Jianzhao, Zhang, Yifei, Zuo, Yunjiang, and Zhang,
            Xing, 2023. Effects of climate change and agricultural expansion on groundwater storage in the Amur River Basin. Frontiers
            in Earth Science, 10:1037688, doi:10.3389/feart.2022.1037688.
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- Zhang, Jianxin, Liu, Kai, and Wang, Ming, 2023. Flood detection using Gravity Recovery and Climate Experiment (GRACE) terrestrial
            water storage and extreme precipitation data. Earth System Science Data, 15(2):521–540, doi:10.5194/essd-15-521-2023.
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- Zhang, Xingxing, 2023. Impacts of Water Resources Management on Land Water Storage in the Lower Lancang River Basin: Insights
            from Multi-Mission Earth Observations. Remote Sensing, 15(7):1747, doi:10.3390/rs15071747.
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- Zhang, Jing, Liu, Futian, Ji, Dongli, Wang, Wei, Yin, Wenjie, Jiang, Wanjun, Chen, Sheming, and Zhang, Zhuo, 2023. Tracking
            the dynamics of a local-scale lake using GRACE from a hydrogeological perspective. Hydrogeology Journal, 31(1):97–110,
            doi:10.1007/s10040-022-02578-2.
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- Zhang, Dan, Liu, Xiaomang, Simmons, Craig T., Zhang, Lu, and Zhang, Qi, 2023. Changes in groundwater levels across China from
            2005 to 2016. Journal of Hydrology, 623:129781, doi:10.1016/j.jhydrol.2023.129781.
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- Zhang, Junchao, Hu, Litang, Sun, Jianchong, and Wang, Dao, 2023. Reconstructing Groundwater Storage Changes in the North China
            Plain Using a Numerical Model and GRACE Data. Remote Sensing, 15(13):3264, doi:10.3390/rs15133264.
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- Zhang, Haoyue, Xu, Peng, Ye, Zongqi, Ye, Dong, Qiang, Li-E., Luo, Ziren, Qi, Keqi, Wang, Shaoxin, Cai, Zhiming, Wang, Zuolei,
            Lei, Jungang, and Wu, Yueliang, 2023. A Systematic Approach for Inertial Sensor Calibration of Gravity Recovery Satellites
            and Its Application to Taiji-1 Mission. Remote Sensing, 15(15):3817, doi:10.3390/rs15153817.
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- Zhang, Dan, Liu, Xiaomang, Li, Xianghu, Bai, Peng, and Li, Jiayun, 2022. Assessing changes in total water storage in two large
            freshwater lake basins of China. Hydrological Processes, 36(3):e14556, doi:10.1002/hyp.14556.
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- Zhang, Shanjun, Liu, Jia, Li, Chuanzhe, Yu, Fuliang, Jing, Lanshu, and Wang, Yizhi, 2023. Identification of the large-area
            and long-duration drought and its evolutionary characteristics in Nenjiang River basin. Journal of Hydrology, 626:130218,
            doi:10.1016/j.jhydrol.2023.130218.
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- Zhang, Yongqiang, Li, Congcong, Chiew, Francis H. S., Post, David A., Zhang, Xuanze, Ma, Ning, Tian, Jing, Kong, Dongdong,
            Leung, L. Ruby, Yu, Qiang, Shi, Jiancheng, and Liu, Changming, 2023. Southern Hemisphere dominates recent decline in global
            water availability. Science, 382(6670):579–584, doi:10.1126/science.adh0716.
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- Zhang, H., Cai, H. T., Wan, X., Hu, K., Xiong, C., Gao, S. Z., and Yang, L. B., 2024. The Altitudinal Dependences
            of the Inter-Hemispheric Asymmetry in the Mid-Latitude Ionospheric Post-Midnight Enhancement During Equinox. Journal of
            Geophysical Research (Space Physics), 129(1):e2023JA032260, doi:10.1029/2023JA032260.
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- Zhang, Qingquan, Pan, Yun, Zhang, Chong, and Gong, Huili, 2023. Deriving the Terrestrial Water Storage Anomaly From GRACE
            Spherical Harmonic Coefficients Using a Convolutional Neural Network. Earth and Space Science, 10(12):e2023EA003023,
            doi:10.1029/2023EA003023.
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- Zhang, Xiao, Wu, Xiong, Mu, Wenping, Zhao, Rong, Ye, Baoying, and Bai, Zhongke, 2024. Understanding the shift in drivers of
            terrestrial water storage decline in the central Inner Mongolian steppe over the past two decades. Journal of Hydrology,
            636:131312, doi:10.1016/j.jhydrol.2024.131312.
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- Zhang, Jiahui, You, Wei, Yu, Biao, and Fan, Dongming, 2024. Improved GRACE-FO kinematic orbit determination with epoch-difference
            KBR during the GPS flex power period. Advances in Space Research, 74(5):2011–2024, doi:10.1016/j.asr.2024.05.061.
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- Zhang, Hongyue, 2024. Tracking the spatial patterns and thematic dynamics of GRACE satellite application over the last 20
            years (2002–2022). Frontiers in Earth Science, 12:1392359, doi:10.3389/feart.2024.1392359.
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- Zhang, Tao, Bian, Shaofeng, Ji, Bing, Li, Wanqiu, Zong, Jingwen, and Yuan, Jiajia, 2024. The Extraction of Terrestrial Water
            Storage Anomaly from GRACE in the Region with Medium Scale and Adjacent Weak Signal Area: A Case for the Dnieper River Basin.
            Remote Sensing, 16(12):2124, doi:10.3390/rs16122124.
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- Zhang, Lin, Shen, Yunzhong, Chen, Qiujie, and Ji, Kunpu, 2024. An improved parameter filtering approach for processing GRACE
            gravity field models using first-order Gauss-Markov process. Journal of Geodesy, 98(6):56, doi:10.1007/s00190-024-01871-0.
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- Zhang, Chengyuan, Han, Zhiming, Wang, Shuo, Wang, Jiankun, Cui, Chenfeng, and Liu, Junrong, 2024. Accelerated Atmospheric
            to Hydrological Spread of Drought in the Yangtze River Basin under Climate. Remote Sensing, 16(16):3033, doi:10.3390/rs16163033.
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- Zhang, Jinliang, Lu, Zhong, Li, Chaoqun, Lei, Guoping, Yu, Ziyang, and Li, Kuo, 2024. Estimation of groundwater-level changes
            based on GRACE satellite and GLDAS assimilation data in the Songnen Plain, China. Hydrogeology Journal, 32(5):1495–1509,
            doi:10.1007/s10040-024-02815-w.
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- Zhang, Xu, Li, Jinbao, Wang, Zifeng, and Dong, Qianjin, 2022. Global hydroclimatic drivers of terrestrial water storage changes
            in different climates. Catena, 219:106598, doi:10.1016/j.catena.2022.106598.
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- Zhang, Xinggang, Jin, Shuanggen, and Lu, Xiaochun, 2017. Global Surface Mass Variations from Continuous GPS Observations and
            Satellite Altimetry Data. Remote Sensing, 9(10):1000, doi:10.3390/rs9101000.
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- Zhang, Bao, Yao, Yibin, Fok, Hok Sum, Hu, Yufeng, and Chen, Qiang, 2016. Potential Seasonal Terrestrial Water Storage Monitoring
            from GPS Vertical Displacements: A Case Study in the Lower Three-Rivers Headwater Region, China. Sensors, 16(9):1526,
            doi:10.3390/s16091526.
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- Zhang, Guoqing, Shen, Wenbin, Xu, Changyi, and Zhu, Yiqing, 2016. Coseismic Gravity and Displacement Signatures Induced by
            the 2013 Okhotsk Mw8.3 Earthquake. Sensors, 16(9):1410, doi:10.3390/s16091410.
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- Zhang, Rong, Ouyang, Zu-Tao, Xie, Xiao, Guo, Hai-Qiang, Tan, Dun-Yan, Xiao, Xiang-Ming, Qi, Jia-Guo, and Zhao, Bin, 2016.
            Impact of Climate Change on Vegetation Growth in Arid Northwest of China from 1982 to 2011. Remote Sensing, 8(5):364,
            doi:10.3390/rs8050364.
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- Zhang, Xunhe, Wang, Nai'ang, Xie, Zunyi, Ma, Xuanlong, and Huete, Alfredo, 2018. Water Loss Due to Increasing Planted Vegetation
            over the Badain Jaran Desert, China. Remote Sensing, 10(1):134, doi:10.3390/rs10010134.
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- Zhang, Gangqiang, Zheng, Wei, Yin, Wenjie, and Lei, Weiwei, 2020. Improving the Resolution and Accuracy of Groundwater Level
            Anomalies Using the Machine Learning-Based Fusion Model in the North China Plain. Sensors, 21(1):46, doi:10.3390/s21010046.
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- Zhang, Jinwei, Tourian, Mohammad J., and Sneeuw, Nico, 2020. Identification of ENSO signature in the boreal hydrological cycle
            through canonical correlation with sea surface temperature anomalies. International Journal of Climatology, 40(15):6219–6241,
            doi:10.1002/joc.6573.
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- Zhang, Yan, Yu, Jinjiang, Chen, Junyu, and Sang, Jizhang, 2021. An Empirical Atmospheric Density Calibration Model Based on
            Long Short-Term Memory Neural Network. Atmosphere, 12(7):925, doi:10.3390/atmos12070925.
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- Zhang, Jianxin, Liu, Kai, and Wang, Ming, 2021. Downscaling Groundwater Storage Data in China to a 1-km Resolution Using Machine
            Learning Methods. Remote Sensing, 13(3):523, doi:10.3390/rs13030523.
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            ellipticity of the earth from GRACE and SLR measurements. Chinese Journal of Geophysics-Chinese Edition, 50(5):1383–1389,
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- Zhang, Rui, Xiong, Yongliang, and Xu, Shaoguang, 2025. Phase residuals analysis in kinematic orbit determination of GRACE-FO.
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            with a climate adjustment scheme using Singular Spectrum analysis. Journal of Hydrology, 653:132782, doi:10.1016/j.jhydrol.2025.132782.
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- Zhang, Yu, Zhang, Yi, Liu, Sulan, Wu, Xiaohui, Liu, Yubin, Zhong, Yulong, and Wu, Yunlong, 2025. Regulatory Impacts of the
            Three Gorges Dam on Long-Term Terrestrial Water Storage Anomalies in the Three Gorges Reservoir Area: Insights from GRACE
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- Zhang, Yang, Liang, Xinfeng, Chambers, Don P., and Huang, Minghai, 2025. Assessing Deep and Abyssal Ocean Heat Content Changes
            With a Dynamically Consistent Ocean State Estimate. Journal of Geophysical Research (Oceans), 130(3):2024JC020925,
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            time variable signals from GRACE monthly gravity field models. Journal of Hydrology, 661:133552, doi:10.1016/j.jhydrol.2025.133552.
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- Zhang, Xiao, Wu, Xiong, and Mu, Wenping, 2025. Unveiling the escalating impact of human activities on groundwater storage
            in ecologically fragile steppe, Northern China. Journal of Hydrology, 659:133296, doi:10.1016/j.jhydrol.2025.133296.
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            water storage variation in Southeastern China. Environmental Research Letters, 20(8):084071, doi:10.1088/1748-9326/adeff4.
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            network. Advances in Space Research, 76(1):481–496, doi:10.1016/j.asr.2025.04.067.
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- Zhang, Chenchen, Xiao, Xiangming, Wang, Xinxin, Yi, Shuang, Meng, Cheng, Qin, Yuanwei, Yao, Yuan, Yin, Leikun, Celis, Jorge,
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- Zhang, Lin, Shen, Yunzhong, Ji, Kunpu, and Chen, Qiujie, 2025. An Enhanced Parameter Filtering Approach for Postprocessing
            GRACE Monthly Gravity Field Models. IEEE Geoscience and Remote Sensing Letters, 22:LGRS.2025, doi:10.1109/LGRS.2025.3575197.
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- Zhang, Qian, Lv, Shengwei, Zhang, Shengwei, Zhou, Ying, Lin, Xi, Yang, Lin, Wang, Shuai, and Li, Ruishen, 2025. Land use and
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         - Zhao, Q., Guo, J., Hu, Z., Shi, C., Liu, J., Cai, H., and Liu, X., 2011. GRACE gravity field modeling with an investigation
            on correlation between nuisance parameters and gravity field coefficients. Advances in Space Research, 47:1833–1850,
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- Zhao, S., 2013. Lithosphere thickness and mantle viscosity estimated from joint inversion of GPS and GRACE-derived radial
            deformation and gravity rates in North America. Geophysical Journal International, 194:1455–1472, doi:10.1093/gji/ggt212.
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- Zhao, Q., Wu, W., and Wu, Y., 2017. Using combined GRACE and GPS data to investigate the vertical crustal deformation at the
            northeastern margin of the Tibetan Plateau. Journal of Asian Earth Sciences, 134:122–129, doi:10.1016/j.jseaes.2016.11.010.
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- Zhao, M., A, G., Velicogna, I., and Kimball, J. S., 2017. A Global Gridded Dataset of GRACE Drought Severity Index for
            2002-14: Comparison with PDSI and SPEI and a Case Study of the Australia Millennium Drought. Journal of Hydrometeorology,
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- Zhao, M., A, G., Velicogna, I., and Kimball, J. S., 2017. Satellite Observations of Regional Drought Severity in the
            Continental United States Using GRACE-Based Terrestrial Water Storage Changes. Journal of Climate, 30:6297–6308,
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            Journal International, 211:1449–1460, doi:10.1093/gji/ggx378.
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- Zhao, C., Huang, Y., Li, Z., and Chen, M., 2018. Drought Monitoring of Southwestern China Using Insufficient GRACE Data for
            the Long-Term Mean Reference Frame under Global Change. Journal of Climate, 31:6897–6911, doi:10.1175/JCLI-D-17-0869.1.
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            reveal the recent acceleration of groundwater depletion in North China Plain. Journal of Hydrology, 575:1065–1072,
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- Zhao, Mengnan, Ponte, Rui M., Penduff, Thierry, Close, Sally, Llovel, William, and Molines, Jean-Marc, 2021. Imprints of Ocean
            Chaotic Intrinsic Variability on Bottom Pressure and Implications for Data and Model Analyses. Geophysical Research Letters,
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            groundwater droughts and their relationship in the North China Plain. Journal of Hydrology, 610:127903, doi:10.1016/j.jhydrol.2022.127903.
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            variability. Science Advances, 9(29):eadg0278, doi:10.1126/sciadv.adg0278.
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- Zhao, Juan, Li, Geng, Zhu, Ziyue, Hao, Yonghong, Hao, Huiqing, Yao, Jiaqi, Bao, Teligeer, Liu, Qi, and Yeh, Tian-Chyi Jim,
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            2011. Water storage variations of the Yangtze, Yellow, and Zhujiang river basins derived from the DEOS Mass Transport (DMT-1)
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- Zhao, Qian, Jiang, WeiPing, Xu, XinYu, and Zou, XianCai, 2015. Feasibility study on application of satellite formations for
            eliminating the influence from aliasing error of ocean tide model. Science China Earth Sciences, 58(3):474–481,
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- Zhao, Xiaowei, Yu, Ying, Cheng, Jianmei, Ding, Kuiyuan, Luo, Yiming, Zheng, Kun, Xian, Yang, and Lin, Yihang, 2024. A Novel
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- Zhao, Meng, McCormick, Erica L., A, Geruo, Konings, Alexandra G., and Li, Bailing, 2025. Substantial Root-Zone Water Storage
            Capacity Observed By Grace And Grace/Fo. Hydrology and Earth System Sciences, 29:2293–2307, doi:10.5194/hess-29-2293-2025.
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- Zhao, Shuhong and Li, Lidan, 2025. GRACE-FO Satellite Data Preprocessing Based on Residual Iterative Correction and Its Application
            to Gravity Field Inversion. Sensors, 25(11):3555, doi:10.3390/s25113555.
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            gravity field from GRACE and ground-based GPS measurements combination. Advances in Space Research, 76(8):4349–4361,
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         - Zheng, W., Lu, X. L., Hsu, H. T., Shao, C. G., Luo, J., and Wang N. C., 2005. Simulation of the Earth's
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- Zheng, W., Shao, C. G., Luo, J., and Xu, H. Z., 2008. Improving the accuracy of GRACE Earth's gravitational field
            using the combination of different inclinations. Progress in Natural Science, 18:555–561.
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- Zheng, W., Xu, H.-Z., Zhong, M., and Yun, M.-J., 2008. Physical Explanation on Designing Three Axes as Different Resolution
            Indexes from GRACE Satellite-Borne Accelerometer. Chinese Physics Letters, 25:4482–4485, doi:10.1088/0256-307X/25/12/084.
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- Zheng, W., Hsu, H.-T., Zhong, M., and Yun, M.-J., 2009. Accurate and rapid error estimation on global gravitational field
            from current GRACE and future GRACE Follow-On missions. Chinese Physics B, 18:3597–3604, doi:10.1088/1674-1056/18/8/077.
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- Zheng, W., Xu, H.-Z., Zhong, M., and Yun, M.-J., 2009. Physical Explanation of Influence of Twin and Three Satellite Formation
            Mode on the Accuracy of Earth's Gravitational Field. Chinese Physics Letters, 26(2):029101–+, doi:10.1088/0256-307X/26/2/029101.
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- Zheng, W., Hsu, H.-T., Zhong, M., Yun, M.-J., Zhou, X.-H., and Peng, B.-B., 2010. An Analysis on Requirements of Orbital Parameters
            in Satellite-to-Satellite Tracking Mode. Chinese Astronomy and Astrophysics, 34:413–423, doi:10.1016/j.chinastron.2010.10.013.
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- Zheng, W., Hsu, H. T., Zhong, M., Yun, M. J., Zhou, X. H., and Peng, B. B., 2010. Requirement Analysis
            of Orbital Parameters in the Satellite-to-Satellite Tracking Model. Acta Astronomica Sinica, 51:65–74.
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2012. Efficient accuracy improvement of GRACE global gravitational field recovery
            using a new Inter-satellite Range Interpolation Method. Journal of Geodynamics, 53:1–7, doi:10.1016/j.jog.2011.07.003.
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2011. Efficient Calibration of the Non-Conservative Force Data from the Space-Borne
            Accelerometers of the Twin GRACE Satellites. Japan Society of Aeronautical Space Sciences Transactions, 54:106–110,
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2012. Precise Recovery of the Earth's Gravitational Field With GRACE: Intersatellite
            Range-Rate Interpolation Approach. IEEE Geoscience and Remote Sensing Letters, 9:422–426, doi:10.1109/LGRS.2011.2171475.
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- Zheng, W., Hsu, H.-T., Zhong, M., Liu, C.-S., and Yun, M.-J., 2013. Efficient and rapid accuracy estimation of the Earth's
            gravitational field from next-generation GOCE Follow-On by the analytical method. Chinese Physics B, 22(4):049101,
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- Zheng, W., Hsu, H.-T., Zhong, M., and Yun, M.-J., 2014. Physical analysis on improving the recovery accuracy of the Earth's
            gravity field by a combination of satellite observations in along-track and cross-track directions. Chinese Physics B,
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- Zheng, W., Hsu, H., Zhong, M., and Yun, M., 2015. Requirements Analysis for Future Satellite Gravity Mission Improved-GRACE.
            Surveys in Geophysics, 36:87–109, doi:10.1007/s10712-014-9306-y.
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- Zheng, Z., Jin, S., and Fan, L., 2018. Co-seismic deformation following the 2007 Bengkulu earthquake constrained by GRACE
            and GPS observations. Physics of the Earth and Planetary Interiors, 280:20–31, doi:10.1016/j.pepi.2018.04.009.
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- Zheng, W. and Li, Z., 2018. Preferred design and error analysis for the future dedicated deep-space Mars-SST satellite gravity
            mission. Astrophysics and Space Science, 363:172, doi:10.1007/s10509-018-3392-0.
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- Zheng, M., Deng, K., Fan, H., and Du, S., 2018. Monitoring and Analysis of Surface Deformation in Mining Area Based on InSAR
            and GRACE. Remote Sensing, 10:1392, doi:10.3390/rs10091392.
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            Water budget variation, groundwater depletion, and water resource vulnerability in the Haihe River Basin during the new millennium.
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- Zheng, Shuo, Zhang, Zizhan, Yan, Haoming, Zhao, Yaxian, and Li, Zhen, 2023. Characterizing drought events occurred in the
            Yangtze River Basin from 1979 to 2017 by reconstructing water storage anomalies based on GRACE and meteorological data. Science
            of the Total Environment, 868:161755, doi:10.1016/j.scitotenv.2023.161755.
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- Zheng, Shuo, Zhang, Zizhan, Song, Zhe, Li, Yan, and Yan, Haoming, 2023. Anthropogenic and Climate-Driven Water Storage Variations
            on the Mongolian Plateau. Remote Sensing, 15(17):4184, doi:10.3390/rs15174184.
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- Zheng, Shuo, Zhang, Zizhan, Scanlon, Bridget R., Yan, Haoming, Sun, Alexander Y., Rateb, Ashraf, and Li, Yan, 2024. High Spatial
            Resolution in Total Water Storage Variations Inferred From GPS: Case Study in the Great Lakes Watershed, US. Water Resources
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- Zheng, Shuyun, Zhou, Hao, Ma, Zhiyu, Guo, Xiang, and Luo, Zhicai, 2025. On the feasibility of retrieving the temporal gravity
            field via improved optical clocks. Journal of Geodesy, 99(1):7, doi:10.1007/s00190-024-01930-6.
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            for distributed hydrological modelling in ungauged basins. Journal of Hydrology, 658:133119, doi:10.1016/j.jhydrol.2025.133119.
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         - Zhong, M., Yan, H., Wu, X., Duan, J., and Zhu, Y., 2006. Non-tidal oceanic contribution to polar wobble estimated from two
            oceanic assimilation data sets. Journal of Geodynamics, 41:147–154, doi:10.1016/j.jog.2005.10.011.
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- Zhong, Y., Zhong, M., Feng, W., Zhang, Z., Shen, Y., and Wu, D., 2018. Groundwater Depletion in the West Liaohe River Basin,
            China and Its Implications Revealed by GRACE and In Situ Measurements. Remote Sensing, 10:493, doi:10.3390/rs10040493.
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- Zhong, Yulong, Zhong, Min, Mao, Yuna, and Ji, Bing, 2020. Evaluation of Evapotranspiration for Exorheic Catchments of China
            during the GRACE Era: From a Water Balance Perspective. Remote Sensing, 12(3):511, doi:10.3390/rs12030511.
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- Zhong, Bo, Li, Xianpao, Chen, Jianli, Li, Qiong, and Liu, Tao, 2020. Surface Mass Variations from GPS and GRACE/GFO: A Case
            Study in Southwest China. Remote Sensing, 12(11):1835, doi:10.3390/rs12111835.
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- Zhong, Bo, Li, Qiong, Chen, Jianli, Luo, Zhicai, and Zhou, Hao, 2020. Improved estimation of regional surface mass variations
            from GRACE intersatellite geopotential differences using a priori constraints. Remote Sensing, 12(16):2553, doi:10.3390/rs12162553.
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- Zhong, Detang, Wang, Shusen, and Li, Junhua, 2021. A Self-Calibration Variance-Component Model for Spatial Downscaling of
            GRACE Observations Using Land Surface Model Outputs. Water Resources Research, 57(1):e28944, doi:10.1029/2020WR028944.
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- Zhong, Detang, Wang, Shusen, and Li, Junhua, 2021. Spatiotemporal Downscaling of GRACE Total Water Storage Using Land Surface
            Model Outputs. Remote Sensing, 13(5):900, doi:10.3390/rs13050900.
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- Zhong, Ruida, Zhao, Tongtiegang, Chen, Xiaohong, and Jin, Haoyu, 2022. Monitoring drought in ungauged areas using satellite
            altimetry: The Standardized River Stage Index. Journal of Hydrology, 612:128308, doi:10.1016/j.jhydrol.2022.128308.
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- Zhong, Bo, Li, Qiong, Li, Xianpao, and Chen, Jianli, 2023. Basin-scale terrestrial water storage changes inferred from GRACE-based
            geopotential differences: a case study of the Yangtze River Basin, China. Geophysical Journal International, 233(2):1318–1338,
            doi:10.1093/gji/ggac524.
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- Zhong, Yulong, Bai, Hongbing, Feng, Wei, Lu, Jing, and Humphrey, Vincent, 2023. Separating the Precipitation- and Non-Precipitation-
            Driven Water Storage Trends in China. Water Resources Research, 59(3):e2022WR033261, doi:10.1029/2022WR033261.
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- Zhong, Bo, Li, Xianpao, Chen, Jianli, and Li, Qiong, 2023. WHU-GRACE-GPD01s: A Series of Constrained Monthly Gravity Field
            Solutions Derived From GRACE-Based Geopotential Differences. Earth and Space Science, 10(4):e2022EA002699, doi:10.1029/2022EA002699.
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- Zhong, Yulong, Tian, Baoming, Vishwakarma, Bramha Dutt, Feng, Wei, Wu, Yunlong, Bai, Hongbing, and Zhong, Min, 2023. Reinterpreting
            Global GRACE Trends Based on Century-Long GRACE-REC Data. Water Resources Research, 59(12):e2023WR035817, doi:10.1029/2023WR035817.
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- Zhong, Bo, Li, Xianpao, Chen, Jianli, Li, Jiancheng, and Xu, Hongyi, 2024. Estimation of Terrestrial Water Storage Changes
            in Brazil From the Joint Inversion of GRACE-Based Geopotential Difference and GNSS Vertical Displacement Data. Water Resources
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- Zhong, Yulong, Tian, Baoming, Kim, Hyunglok, Yuan, Xing, Liu, Xinyue, Zhu, Enda, Wu, Yunlong, Wang, Lunche, and Wang, Lizhe,
            2025. Over 60% precipitation transformed into terrestrial water storage in global river basins from 2002 to 2021. Communications
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            tracking data. Chinese Journal of Geophysics - Chinese Edition, 49:718–723.
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- Zhou, X. H., Wu, B., Peng, B. B., and Xsu, H. Z., 2006. Detection of global water storage variation using GRACE.
            Chinese Journal of Geophysics - Chinese Edition, 49:1644–1650.
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- Zhou, J. C. and Sun, H. P., 2007. Effect of ocean tide on recovery of satellite gravity field. Chinese Journal
            of Geophysics - Chinese Edition, 50:115–121.
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- Zhou, X., Sun, W., Zhao, B., Fu, G., Dong, J., and Nie, Z., 2012. Geodetic observations detecting coseismic displacements
            and gravity changes caused by the Mw = 9.0 Tohoku-Oki earthquake. Journal of Geophysical Research (Solid Earth), 117(B16):5408,
            doi:10.1029/2011JB008849.
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- Zhou, Y. L., Ma, S. Y., Liu, R. S., Luehr, H., and Doornbos, E., 2013. Controlling of merging electric field
            and IMF magnitude on storm-time changes in thermospheric mass density. Annales Geophysicae, 31:15–30, doi:10.5194/angeo-31-15-2013.
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- Zhou, J., Sun, H., Xu, J., and Zhang, W., 2016. Estimation of local water storage change by space- and ground-based gravimetry.
            Journal of Applied Geophysics, 131:23–28, doi:10.1016/j.jappgeo.2016.05.007.
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- Zhou, H., Luo, Z., Wu, Y., Li, Q., and Xu, C., 2016. Impact of geophysical model error for recovering temporal gravity field
            model. Journal of Applied Geophysics, 130:177–185, doi:10.1016/j.jappgeo.2016.04.004.
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- Zhou, Y.-L., Wang, L., Xiong, C., Lühr, H., and Ma, S.-Y., 2016. The solar activity dependence of nonmigrating tides
            in electron density at low and middle latitudes observed by CHAMP and GRACE. Annales Geophysicae, 34:463–472,
            doi:10.5194/angeo-34-463-2016.
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- Zhou, H., Luo, Z., Zhou, Z., Zhong, B., and Hsu, H., 2017. HUST-Grace2016s: A new GRACE static gravity field model derived
            from a modified dynamic approach over a 13-year observation period. Advances in Space Research, 60:597–611, doi:10.1016/j.asr.2017.04.026.
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- Zhou, Hao, Zhou, Zebing, and Luo, Zhicai, 2019. A New Hybrid Processing Strategy to Improve Temporal Gravity Field Solution.
            Journal of Geophysical Research (Solid Earth), 124(8):9415–9432, doi:10.1029/2019JB017752.
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- Zhou, Hao, Zhou, Zebing, Luo, Zhicai, Wang, Kang, and Wei, Min, 2020. What can be expected from GNSS tracking of satellite
            constellations for temporal gravity field model determination?. Geophysical Journal International, 222:661–677,
            doi:10.1093/gji/ggaa177.
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- Zhou, Xingyu, Jiang, Weiping, Chen, Hua, Li, Zhao, and Liu, Xuexi, 2019. Improving the GRACE Kinematic Precise Orbit Determination
            Through Modified Clock Estimating. Sensors, 19(19):4347, doi:10.3390/s19194347.
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- Zhou, Hao, Dai, Min, Wang, Penghui, Wei, Min, Tang, Lu, Xu, Siyou, and Luo, Zhicai, 2022. Assessment of GRACE terrestrial
            water storage estimates using an improved forward modeling method: a case study in Africa. Frontiers in Earth Science,
            9:1322, doi:10.3389/feart.2021.796723.
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- Zhou, Xingyu, Chen, Hua, Jiang, Weiping, Chen, Yan, Jin, Taoyong, Liu, Tianjun, and Gao, Yang, 2022. A new ambiguity resolution
            method for LEO precise orbit determination. Journal of Geodesy, 96(7):49, doi:10.1007/s00190-022-01629-6.
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- Zhou, Ting, Wen, Xiaohu, Feng, Qi, Yu, Haijiao, and Xi, Haiyang, 2022. Bayesian Model Averaging Ensemble Approach for Multi-Time-Ahead
            Groundwater Level Prediction Combining the GRACE, GLEAM, and GLDAS Data in Arid Areas. Remote Sensing, 15(1):188, doi:10.3390/rs15010188.
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- Zhou, Hao, Wang, Penghui, Pail, Roland, Guo, Xiang, Wu, Yunlong, and Luo, Zhicai, 2023. Assessment of a near-polar pair mission
            for detecting the Earth's temporal gravity field. Geophysical Journal International, 234(2):852–869, doi:10.1093/gji/ggad107.
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- Zhou, Hao, Zheng, Lijun, Pail, Roland, Liu, Shuhao, Qing, Tiantian, Yang, Fan, Guo, Xiang, and Luo, Zhicai, 2023. The impacts
            of reducing atmospheric and oceanic de-aliasing model error on temporal gravity field model determination. Geophysical
            Journal International, 234(1):210–227, doi:10.1093/gji/ggad064.
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- Zhou, Hao, Wang, Penghui, Tang, Lu, and Luo, Zhicai, 2023. A New GRACE Filtering Approach Based on Iterative Image Convolution.
            Journal of Geophysical Research (Solid Earth), 128(9):e2023JB026553, doi:10.1029/2023JB026553.
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- Zhou, Hao, Zheng, Lijun, Li, Yaozong, Guo, Xiang, Zhou, Zebing, and Luo, Zhicai, 2024. Hust-Grace2024: A New Grace-Only Gravity
            Field Time Series Based On More Than 20 Years Of Satellite Geodesy Data And A Hybrid Processing Chain. Earth System Science
            Data, 16:3261–3281, doi:10.5194/essd-16-3261-2024.
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- Zhou, Hao, Tang, Lu, Tan, Dingyin, Duan, Huizong, Pail, Roland, Luo, Zhicai, and Zhou, Zebing, 2023. Impacts of frequency-dependent
            instrument noise for next-generation gravimetric mission on determining temporal gravity field model. Journal of Geodesy,
            97(3):23, doi:10.1007/s00190-023-01716-2.
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- Zhou, Hao, Luo, Zhicai, Tangdamrongsub, Natthachet, Wang, Lunche, He, Lijie, Xu, Chuang, and Li, Qiong, 2017. Characterizing
            Drought and Flood Events over the Yangtze River Basin Using the HUST-Grace2016 Solution and Ancillary Data. Remote Sensing,
            9(11):1100, doi:10.3390/rs9111100.
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- Zhou, Yun-Liang, Lühr, Hermann, Xiong, Chao, and Pfaff, Robert F., 2016. Ionospheric storm effects and equatorial plasma
            irregularities during the 17-18 March 2015 event. Journal of Geophysical Research (Space Physics), 121(9):9146–9163,
            doi:10.1002/2016JA023122.
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- Zhou, Linghao, Fok, Hok Sum, Ma, Zhongtian, and Chen, Qiang, 2019. Upstream Remotely-Sensed Hydrological Variables and Their
            Standardization for Surface Runoff Reconstruction and Estimation of the Entire Mekong River Basin. Remote Sensing,
            11(9):1064, doi:10.3390/rs11091064.
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- Zhou, Hao, Xu, Chuang, Luo, Zhicai, Zhou, Zebing, Zhong, Bo, and Wan, Jiakuan, 2019. HUST-GOGRA2018s: A new gravity field
            model derived from the combination of GRACE and GOCE data. Terrestrial, Atmospheric and Oceanic Sciences, 30(1):97–109,
            doi:10.3319/TAO.2018.11.02.01.
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- Zhou, Hao, Luo, Zhicai, Zhou, Zebing, Li, Qiong, Zhong, Bo, Lu, Biao, and Hsu, Houze, 2018. Impact of Different Kinematic
            Empirical Parameters Processing Strategies on Temporal Gravity Field Model Determination. Journal of Geophysical Research
            (Solid Earth), 123(11):10,252–10,276, doi:10.1029/2018JB015556.
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- Zhou, Hao, Luo, Zhicai, Tangdamrongsub, Natthachet, Zhou, Zebing, He, Lijie, Xu, Chuang, Li, Qiong, and Wu, Yunlong, 2018.
            Identifying Flood Events over the Poyang Lake Basin Using Multiple Satellite Remote Sensing Observations, Hydrological Models
            and In Situ Data. Remote Sensing, 10(5):713, doi:10.3390/rs10050713.
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- Zhou, Yan, Yang, Shaomin, Luo, Jiesi, Ray, Jim, Huang, Yong, and Li, Jiancheng, 2020. Global Glacial Isostatic Adjustment
            Constrained by GPS Measurements: Spherical Harmonic Analyses of Uplifts and Geopotential Variations. Remote Sensing,
            12(7):1209, doi:10.3390/rs12071209.
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- Zhou, Weijing and Hao, Lu, 2025. How Urban Expansion and Climatic Regimes Affect Groundwater Storage in China's Major River
            Basins: A Comparative Analysis of the Humid Yangtze and Semi-Arid Yellow River Basins. Remote Sensing, 17(7):1292,
            doi:10.3390/rs17071292.
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- Zhou, Junjie, Zhou, Annan, Hu, Ming, Bai, Yanzheng, and Zhou, Zebing, 2025. Increasing the dynamic range of electrostatic
            accelerometers by adjusting the zero-position. Measurement Science and Technology, 36(7):075105, doi:10.1088/1361-6501/ade5c3.
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- Zhou, Jun, Cui, Lilu, Li, Yu, Yao, Chaolong, Meng, Jiacheng, Zou, Zhengbo, and Lu, Yuheng, 2025. GRACE/GFO and Swarm Observation
            Analysis of the 2023–2024 Extreme Drought in the Amazon River Basin. Remote Sensing, 17(16):2765, doi:10.3390/rs17162765.
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- Zhou, Jingwen, Zhong, Yulong, Xiao, Cuiyu, Ji, Bing, Liu, Sulan, and Wu, Yunlong, 2025. Monitoring Significant Terrestrial
            Water Storage Increase From the 237 Extreme Flood Around the Haihe River Basin Using GRACE-FO and Precipitation Reconstruction.
            IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 18:13267–13280, doi:10.1109/JSTARS.2025.3568893.
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            78:103–108, doi:10.1007/s00190-004-0379-0.
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- Zhu, Chuandong, Zhan, Wei, Liu, Jinzhao, and Chen, Ming, 2020. Application of singular spectrum analysis in reconstruction
            of the annual signal from GRACE. Journal of Applied Geodesy, 14(3):295–302, doi:10.1515/jag-2020-0005.
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- Zhu, Enda and Yuan, Xing, 2021. Global Freshwater Storage Capability across Time Scales in the GRACE Satellite Era. Advances
            in Atmospheric Sciences, 38(6):905–917, doi:10.1007/s00376-021-0222-z.
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- Zhu, Qian and Zhang, Hao, 2022. Groundwater drought characteristics and its influencing factors with corresponding quantitative
            contribution over the two largest catchments in China. Journal of Hydrology, 609:127759, doi:10.1016/j.jhydrol.2022.127759.
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- Zhu, Chuandong and Zhan, Wei, 2022. Inter-annual oscillations of terrestrial water storage in Qinghai-Tibetan plateau from
            GRACE data. Journal of Applied Geodesy, 16(4):361–371, doi:10.1515/jag-2022-0002.
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- Zhu, Enda, Wang, Yaqiang, and Yuan, Xing, 2023. Changes of terrestrial water storage during 1981-2020 over China based on
            dynamic-machine learning model. Journal of Hydrology, 621:129576, doi:10.1016/j.jhydrol.2023.129576.
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- Zhu, Bowen, Xie, Xianhong, Wang, Yibing, and Zhao, Xuehua, 2023. The Benefits of Continental-Scale High-Resolution Hydrological
            Modeling in the Detection of Extreme Hydrological Events in China. Remote Sensing, 15(9):2402, doi:10.3390/rs15092402.
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- Zhu, Fengshun, Liu, Xin, Li, Zhen, Yuan, Jiajia, Guo, Jinyun, and Sun, Heping, 2023. High spatial resolution marine gravity
            trend determined from multisatellite altimeter data over Bay of Bengal. Geophysical Journal International, 235(3):2257–2267,
            doi:10.1093/gji/ggad368.
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- Zhu, Hai, Chen, Kejie, Hu, Shunqiang, Wei, Guoguang, Chai, Haishan, and Wang, Tan, 2023. Characterizing hydrological droughts
            within three watersheds in Yunnan, China from GNSS-inferred terrestrial water storage changes constrained by GRACE data. Geophysical
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            (Solid Earth), 130(6):e2024JB029428, doi:10.1029/2024JB029428.
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            on Random Forests During 20112020 in Yunnan, China. IEEE Journal of Selected Topics in Applied Earth Observations and Remote
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            Jonathan L., 2023. Can GPS and GRACE data be used to separate past and present-day surface loading in a data-driven approach?.
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            the balloon-borne gradiometer. Advances in Geosciences, 1:149–153, doi:10.5194/adgeo-1-149-2003.
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