National Natural Science Foundation of China,No.U2243203,No.51979069;Natural Science Foundation of Jiangsu Province,China,No.BK20211202;Research Council of Norway,No.FRINATEK Project 274310。
Understanding the nonlinear relationship between hydrological response and key factors and the cause behind this relationship is vital for water resource management and earth system model.In this study,we undertook se...
National Natural Science Foundation of China,No.42361005,No.41861034,No.41661040,No.32060373。
Quantitative assessments of the impacts of climate change and anthropogenic activities on runoff help us to better understand the mechanisms of hydrological processes.This study analyzed the dynamics of mountainous ru...
National Key Research and Development Program of China,No.2016YFC0502104。
Maintenance of steady streamflow is a critical attribute of the continental river systems for safeguarding downstream ecosystems and agricultural production.Global climate change imposes a potential risk to water supp...
National Key Research and Development Program of China,N.2017YFA0603702;National Natural Science Foundation of China,No.51539009,No.51339004。
The climate change and Land Use/Land Cover(LULC)change both have an important impact on the rainfall-runoff processes.How to quantitatively distinguish and predict the impacts of the above two factors has been a hot s...
National Basic Research Program of China,No.2015CB452702;National Natural Science Foundation of China,No.41671098,No.41530749;"Strategic Priority Research Program" of the Chinese Academy of Sciences,No.XDA20020202;Open Foundation of Laboratory for Earth Surface Processes(LESP)Ministry of Education
Runoff generation is an important part of water retention service, and also plays an important role on soil and water retention. Under the background of the ecosystem degradation, which was caused by the vulnerable ka...
Major Program of National Natural Science Foundation of China,No.41590841;Key Project for National Natural Science Foundation of China,No.41230633
Urbanization significantly increases the risk of urban flooding. Therefore, quantitative study of urban rainfall-runoff processes can provide a scientific basis for urban planning and management. In this paper, the bu...
National Natural Science Foundation of China,No.41390464;National Key Research and Development Program,No.2016YFC0501602;Youth Innovation Promotion Association CAS,No.2016040
This review summarizes the effects of vegetation on runoff and soil loss in three dimensions: vertical vegetation structures(aboveground vegetation cover, surface litter layer and underground roots), plant diversity, ...
National Natural Science Foundation of China,No.41571018
This study presents a soil and water integrated model(SWIM) and associated statistical analyses for the Huaihe River Basin(HRB) based on daily meteorological, river runoff, and water resource data encompassing the per...
Foundation: National Natural Science Foundation of China, No.41571199, No.41571105; Natural Science Foundation of Heilong~iang Province, No.ZD201308
In this paper, we selected the middle and upper reaches of the Wuyuer River basin in the black soil region of Northeast China as the study area. We adopted the soil and water integrated model (SWIM) and evaluated th...
National Natural Science Foundation of China, No.41271048; The Key Program of National Natural Science Foundation of China, No.41330529
Runoff calculation is one of the key components in the hydrological modeling. For a certain spatial scale, runoff is a very complex nonlinear process. Currently, the runoff yield model in different hydrological models...