Variations in China's terrestrial water storage from March 2003 to February 2013 were determined using data from the Gravity Recovery and Climate Experiment (GRACE) monthly gravity field model provided by the Center for Space Research. The results were compared with the variations in surface water estimated using the Global Land Data Assimilation System (GLDAS) hydrological model. The results indicated a decline in terrestrial water storage in the Shanxi and Xinjiang Tianshan regions over the past decade with a downward trend that reached −7.76 ± 0.71 mm/a and −5.8 ± 0.67 mm/a, respectively. Anthropogenic activities were considered to be the major cause of this terrestrial water loss (especially groundwater) in these regions. In contrast, t...
Terrestrial water storage (TWS) is a key element in the global and continental water cycle. Since 20...
Groundwater is crucial for economic development in arid and semiarid areas. The Shiyang River Basin ...
An accurate estimation of water resources dynamics is crucial for proper management of both agricult...
AbstractVariations in China's terrestrial water storage from March 2003 to February 2013 were determ...
AbstractVariations in China's terrestrial water storage from March 2003 to February 2013 were determ...
We applied Gravity Recovery and Climate Experiment (GRACE) Tellus products in combination with Globa...
Using eight years of time-variant gravity measurements from the GRACE gravity satellite mission, we ...
Based on the remove-restore method, the GRACE satellite gravity data are used to study the variation...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Groundwater plays a critical role in the global water cycle and is the drinking source for almost ha...
Groundwater plays a critical role in the global water cycle and is the drinking source for almost ha...
Study region: Ten major river basins in China. Study focus: The spatial and temporal distribution of...
AbstractMass variations in terrestrial water storage (TWS) obtained from eight years of satellite da...
Terrestrial water storage (TWS) is a key element in the global and continental water cycle. Since 20...
Groundwater is crucial for economic development in arid and semiarid areas. The Shiyang River Basin ...
An accurate estimation of water resources dynamics is crucial for proper management of both agricult...
AbstractVariations in China's terrestrial water storage from March 2003 to February 2013 were determ...
AbstractVariations in China's terrestrial water storage from March 2003 to February 2013 were determ...
We applied Gravity Recovery and Climate Experiment (GRACE) Tellus products in combination with Globa...
Using eight years of time-variant gravity measurements from the GRACE gravity satellite mission, we ...
Based on the remove-restore method, the GRACE satellite gravity data are used to study the variation...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Groundwater plays a critical role in the global water cycle and is the drinking source for almost ha...
Groundwater plays a critical role in the global water cycle and is the drinking source for almost ha...
Study region: Ten major river basins in China. Study focus: The spatial and temporal distribution of...
AbstractMass variations in terrestrial water storage (TWS) obtained from eight years of satellite da...
Terrestrial water storage (TWS) is a key element in the global and continental water cycle. Since 20...
Groundwater is crucial for economic development in arid and semiarid areas. The Shiyang River Basin ...
An accurate estimation of water resources dynamics is crucial for proper management of both agricult...