Quantifying the relative contributions of climate variability and human activity to streamflow change is important for effective water resource use and management. Four sub-catchments of the Wei River Basin (WRB) in the Loess Plateau in China were selected as the study region, where the evolution of parameter α from the latest Budyko equation (Wang-Tang equation) was explored using an 11-year moving window. The elasticity of streamflow was derived from the climatic aridity index, represented by the ratio of annual potential evaporation ( E P ) to annual precipitation ( P ), and catchment characteristics as represented by α . The effects of climate change and human activities on streamflow change during 197...
Reduced stream flow and increased sediment discharge are a major concern in the Yellow River basin o...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Reduced stream flow and increased sediment discharge are a major concern in the Yellow River basin o...
Quantifying the relative contributions of climate variability and human activity to streamflow chang...
Understanding hydrological effects of ecological restoration (ER) is fundamental to develop effectiv...
A better understanding of how streamflow interacts with climate change and human activities would co...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Land use and climate change are recognized as two major drivers affecting surface streamflow. On the...
Land use and climate change are recognized as two major drivers affecting surface streamflow. On the...
Stream flow plays a crucial role in the environment, society, and the economy, and identifying the c...
Catchments in the Loess Plateau have been under the influence of human activities for centuries. In ...
x; "> </The catchments in the Loess Plateau, in China’s middle reaches of the Yello...
Climate changes and underlying surface of the watershed have affected the evolution of streamflow to...
The serious soil erosion problems and decreased runoff of the Loess Plateau may aggravate the shorta...
Reduced stream flow and increased sediment discharge are a major concern in the Yellow River basin o...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Reduced stream flow and increased sediment discharge are a major concern in the Yellow River basin o...
Quantifying the relative contributions of climate variability and human activity to streamflow chang...
Understanding hydrological effects of ecological restoration (ER) is fundamental to develop effectiv...
A better understanding of how streamflow interacts with climate change and human activities would co...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Land use and climate change are recognized as two major drivers affecting surface streamflow. On the...
Land use and climate change are recognized as two major drivers affecting surface streamflow. On the...
Stream flow plays a crucial role in the environment, society, and the economy, and identifying the c...
Catchments in the Loess Plateau have been under the influence of human activities for centuries. In ...
x; "> </The catchments in the Loess Plateau, in China’s middle reaches of the Yello...
Climate changes and underlying surface of the watershed have affected the evolution of streamflow to...
The serious soil erosion problems and decreased runoff of the Loess Plateau may aggravate the shorta...
Reduced stream flow and increased sediment discharge are a major concern in the Yellow River basin o...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Reduced stream flow and increased sediment discharge are a major concern in the Yellow River basin o...