Terrestrial water storage (TWS) in high mountain areas contributes large runoff volumes to nearby lowlands during the low-flow season when streamflow is critical to downstream water supplies. The potential for TWS from GRACE (Gravity Recovery and Climate Experiment) satellites to provide long-lead streamflow forecasting in adjacent lowlands during the low-flow season was assessed using the upper Yellow River as a case study. Two linear models were trained for forecasting monthly streamflow with and without TWS anomaly (TWSA) from 2002 to 2016. Results show that the model based on streamflow and TWSA is superior to the model based on streamflow alone at up to a five-month lead-time. The inclusion of TWSA reduced errors in streamflow forecast...
Water storage change has implications not only for the hydrological cycle, but also for sustainable ...
This discussion paper has been under review for the journal Hydrology and Earth System Sciences (HES...
The Gravity Recovery and Climate Experiment (GRACE) satellite solutions have been considerably appli...
Terrestrial water storage (TWS) in high mountain areas contributes large runoff volumes to nearby lo...
Quantifying the human effects on water resources plays an important role in river basin management. ...
The amount of water stored on continents is an important constraint for water mass and energy exchan...
Despite the fact that streamflow occurs mainly due to depletion of storage, our knowledge on how a d...
Hydrological models and the data derived from the Gravity Recovery and Climate Experiment (GRACE) sa...
Terrestrial water storage (TWS) includes all forms of water stored on and below the land surface, an...
AbstractMass variations in terrestrial water storage (TWS) obtained from eight years of satellite da...
We use monthly measurements of time-variable gravity from the GRACE (Gravity Recovery and Climate Ex...
AbstractTime-variable gravity data from the Gravity Recovery and Climate Experiment (GRACE) satellit...
AbstractThe Gravity Recovery and Climate Experiment (GRACE) satellite mission provides a unique oppo...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Accurate terrestrial water storage (TWS) estimation is important to evaluate the situation of the wa...
Water storage change has implications not only for the hydrological cycle, but also for sustainable ...
This discussion paper has been under review for the journal Hydrology and Earth System Sciences (HES...
The Gravity Recovery and Climate Experiment (GRACE) satellite solutions have been considerably appli...
Terrestrial water storage (TWS) in high mountain areas contributes large runoff volumes to nearby lo...
Quantifying the human effects on water resources plays an important role in river basin management. ...
The amount of water stored on continents is an important constraint for water mass and energy exchan...
Despite the fact that streamflow occurs mainly due to depletion of storage, our knowledge on how a d...
Hydrological models and the data derived from the Gravity Recovery and Climate Experiment (GRACE) sa...
Terrestrial water storage (TWS) includes all forms of water stored on and below the land surface, an...
AbstractMass variations in terrestrial water storage (TWS) obtained from eight years of satellite da...
We use monthly measurements of time-variable gravity from the GRACE (Gravity Recovery and Climate Ex...
AbstractTime-variable gravity data from the Gravity Recovery and Climate Experiment (GRACE) satellit...
AbstractThe Gravity Recovery and Climate Experiment (GRACE) satellite mission provides a unique oppo...
Monitoring variations in terrestrial water storage (TWS) is of great significance for the management...
Accurate terrestrial water storage (TWS) estimation is important to evaluate the situation of the wa...
Water storage change has implications not only for the hydrological cycle, but also for sustainable ...
This discussion paper has been under review for the journal Hydrology and Earth System Sciences (HES...
The Gravity Recovery and Climate Experiment (GRACE) satellite solutions have been considerably appli...