[1] Liu C M, Y J J, Kendy E. Groundwater exploitation and its impact on the environment in the North China Plain[J]. Water International, 2001, 26(2):265-272.
[2] 张兆吉, 雒国中, 王昭, 等. 华北平原地下水资源可持续利用研究[J]. 资源科学, 2009, 31(3):355-360.
[3] Long D, Pan Y, Zhou J, et al. Global analysis of spatiotemporal variability in merged total water storage changes using multiple GRACE products and global hydrological models[J]. Remote Sensing of Environment, 2017(192):198-216.
[4] 常乐, 钱安, 易爽, 等. 基于卫星重力、卫星测高和温盐度综合数据的中国近海各区域海平面变化[J]. 中国科学院大学学报, 2017, 34(3):371-379.
[5] 许厚泽. 卫星重力研究:21世纪大地测量研究的新热点[J]. 测绘科学, 2001, 26(3):1-3.
[6] 孙文科. 低轨道人造卫星(CHAMP、GRACE、GOCE)与高精度地球重力场:卫星重力大地测量的最新发展及其对地球科学的重大影响[J]. 大地测量与地球动力学, 2002, 22(1):92-100.
[7] Tapley B D, Bettadpur S, Ries J C, et al. GRACE measurements of mass variability in the Earth system[J]. Science, 2004, 305(5683):503-505.
[8] Famiglietti J S, Lo M, Ho S L, et al. Satellites measure recent rates of groundwater depletion in California's Central Valley[J]. Geophysical Research Letters, 2011, 38(3):403-406.
[9] 钟敏, 段建宾, 许厚泽, 等. 利用卫星重力观测研究近5年中国陆地水量中长空间尺度的变化趋势[J]. 科学通报, 2009, 54(9):1290-1294.
[10] Feng W, Zhong M, Lemoine J M, et al. Evaluation of groundwater depletion in North China using the gravity recovery and climate experiment (GRACE) data and ground-based measurements[J]. Water Resources Research, 2013, 49(4):2110-2118.
[11] Huang Z, Pan Y, Gong H, et al. Subregional-scale groundwater depletion detected by GRACE for both shallow and deep aquifers in North China Plain[J]. Geophysical Research Letters, 2015, 42(6):1791-1799.
[12] Gong H, Pan Y, Zheng L, et al. Long-term groundwater storage changes and land subsidence development in the North China Plain (1971-2015)[J]. Hydrogeology Journal, 2018, 26(5):1417-1427.
[13] Zhao Q, Zhang B, Yao Y B, et al. Geodetic and hydrological measurements reveal the recent acceleration of groundwater depletion in North China Plain[J]. Journal of Hydrology, 2019(575):1065-1072.
[14] 王建华, 赵建世, 李海红, 等. 南水北调水资源综合配置研究[M]. 北京:科学出版社,2013:183-188.
[15] 北京市水务局. 北京市水资源公报(2018年度)[EB/OL]. 北京:北京市水务局, 2018.[2020-03-06]. http://swj.beijing.gov.cn/zwgk/szygb/.
[16] 天津市水务局. 2018年天津市水资源公报[EB/OL]. 天津:天津市水务局, 2018.[2020-03-06]. http://swj.tj.gov.cn/swj/.
[17] 水利部海河水利委员会. 2018年海河流域水资源公报[EB/OL]. 北京:水利部海河水利委员会, 2019.[2020-03-06]. http://www.hwcc.gov.cn/.
[18] Cheng M K, Tapley B D. Variations in the Earth's oblateness during the past 26 years[J]. Journal of Geophysical Research:Solid Earth, 2004, 109(B9):402-410.
[19] Swenson S, Chambers D, Wahr J. Estimating geocenter variations from a combination of GRACE and ocean model output[J]. Journal of Geophysical Research:Solid Earth, 2008, 113(B8):410-421.
[20] Wahr J, Molenaar M, Bryan F. Time variability of the Earth's gravity field:hydrological and oceanic effects and their possible detection using GRACE[J]. Journal of Geophysical Research:Solid Earth, 1998, 103(B12):30205-30230.
[21] 冯伟, 王长青, 穆大鹏, 等. 基于GRACE的空间约束方法监测华北平原地下水储量变化[J]. 地球物理学报, 2017, 60(5):1630-1642.
[22] Foster S, Garduno H, Evans R, et al. Quaternary aquifer of the North China Plain:assessing and achieving groundwater resource sustainability[J]. Hydrogeology Journal, 2004, 12(1):81-93.
[23] 钱永, 张兆吉, 费宇红, 等. 华北平原浅层地下水可持续利用潜力分析[J]. 中国生态农业学报, 2014, 22(8):890-897.
[24] Swenson S, Wahr J. Methods for inferring regional surface-mass anomalies from gravity recovery and climate experiment (GRACE) measurements of time-variable gravity[J]. Journal of Geophysical Research, 2002, 107(B9):2193-2205.
[25] Klees R, Zapreeva E A, Winsemius H C, et al. The bias in GRACE estimates of continental water storage[J]. Hydrology and Earth System Sciences, 2007(11):1227-1241.
[26] Landerer F W, Swenson S C. Accuracy of scaled GRACE terrestrial water storage estimates[J]. Water Resources Research, 2012, 48(4):531-541.
[27] Rodell M, Velicogna I, Famiglietti J S. Satellite-based estimates of groundwater depletion in India[J]. Nature, 2009, 460(7258):999-1002.
[28] Su X L, Ping J S, Ye Q X. Terrestrial water variations in the North China Plain revealed by the GRACE mission[J]. Science China Earth Sciences, 2011, 54(12):1965-1970.
[29] Moiwo J P, Tao F, Lu W. Analysis of satellite-based and in situ hydro-climatic data depicts water storage depletion in North China Region[J]. Hydrological Processes, 2013, 27(7):1011-1020.
[30] Feng W, Shum C, Zhong M, et al. Groundwater storage changes in China from satellite gravity:an overview[J], Remote Sensing, 2018, 10(5):674:698.
[31] Yi S, Wang Q, Sun W. Basin mass dynamic changes in China from GRACE based on a multi-basin inversion method[J]. Journal of Geophysical Research:Solid Earth, 2016, 121(5):3782-3803.
[32] Zhang L, Yi S, Wang Q Y, et al. Evaluation of GRACE mascon solutions for small spatial scales and localized mass sources[J]. Geophysical Journal Internal, 2019, 218(2):1307-1321.
[33] Rodell M, Houser P R, Jambor U, et al. The global land data assimilation system[J]. Bulletin of the American Meteorological Society, 2004, 85(3):381-394.
[34] Han Z S. Groundwater resources protection and aquifer recovery in China[J]. Environmental Geology, 2003, 44(1):106-111.
[35] 崔亚莉, 王亚斌, 邵景力, 等. 南水北调实施后华北平原地下水调控研究[J]. 资源科学, 2009, 31(3):382-387. |