financed by the National Natural Science Foundation of China (41201031);the Special Basic Research Fund for Methodology in Hydrology of Ministry of Sciences and Technology, China (2011IM011000);the Innovative Research Team Project of Basic Research Funds for National University at State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering (2009585412);the 111 Project of Ministry of Education and State Administration of Foreign Experts Affairs, China (B08048);the National Key Technology R&D Program by Ministry of Sciences and Technology, China (2013BAC10B02)
In recent years, the streamflow of the Laohahe Basin in China showed a dramatic decrease during the rainy season as a result of climate change and/or human activities. The objective of this work was to document signif...
The research was supported by the National Key Technology R&D Program of China(No.2006BAB14B02-01);by the Ministry of Water Resources of the People’s Republic of China(Contract No.20081012).
Physically-based hydrological models are used to predict catchment water balance through detailed simulation of hydrological processes at small temporal and spatial scales.However,annual catchment water balance can al...
Supported by the National Key Technology R&D Program(2006BAC01A02);the CAS Action-Plan for West Developmert(KZCX2XB20601)~~
Based on observation data from the mini-type automatic weather station,the evapotranspiration quantity of reference crops from artificial grassland in three river sources areas was estimated by the method of FAO Penma...