The Budyko-type equations have begun to be widely adopted to separate the contributions of climate change and human activities to the variation of runoff over long-term periods by using the multi-year averages of hydrological variables. In this study, a two-step framework based on four single-parameter Budyko-type equations is proposed to separate the impacts of climate change and human activities on runoff. First, the relationship of the parameter w in each Budyko-type equation with climatic and human factors is built to reveal the time-variation process of w by using an 11-year moving window. Second, the impacts of climate change and human activities on runoff are separated by using both the decomposition method and the sensitivity method...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Influences of climatic change on the components of global hydrological cycle, including runoff and e...
Runoff and sediment loads from river basin are largely affected by the interplay of climate variabil...
The Budyko-type equations have begun to be widely adopted to separate the contributions of climate c...
For understanding to what extent the relationship between climatic factors and surface runoff been d...
Climate change and human activities have been identified as the two main reasons for the change in r...
Discerning the controlling factors of spatial and temporal changes in runoff is critical for water r...
Quantifying the effects of climate change and human activities on runoff changes is the focus of cli...
A practical approach to separate the impact of the processes of climate change (CC) and human activi...
Most studies on separating the effects of climate change and human activities on runoff are mainly c...
Climate variation and human activities are commonly recognized as two major factors affecting basin ...
The Fenhe River is the second largest tributary of the Yellow River in China. Climatic variation and...
Hydrological cycle is sensitively affected by climatic variation and human activity. Taking the uppe...
Climate factors and human activities are the leading causes of changes in the hydrological cycle. In...
Surface runoff from the Wei River basin, the largest tributary of the Yellow River in China, has dra...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Influences of climatic change on the components of global hydrological cycle, including runoff and e...
Runoff and sediment loads from river basin are largely affected by the interplay of climate variabil...
The Budyko-type equations have begun to be widely adopted to separate the contributions of climate c...
For understanding to what extent the relationship between climatic factors and surface runoff been d...
Climate change and human activities have been identified as the two main reasons for the change in r...
Discerning the controlling factors of spatial and temporal changes in runoff is critical for water r...
Quantifying the effects of climate change and human activities on runoff changes is the focus of cli...
A practical approach to separate the impact of the processes of climate change (CC) and human activi...
Most studies on separating the effects of climate change and human activities on runoff are mainly c...
Climate variation and human activities are commonly recognized as two major factors affecting basin ...
The Fenhe River is the second largest tributary of the Yellow River in China. Climatic variation and...
Hydrological cycle is sensitively affected by climatic variation and human activity. Taking the uppe...
Climate factors and human activities are the leading causes of changes in the hydrological cycle. In...
Surface runoff from the Wei River basin, the largest tributary of the Yellow River in China, has dra...
Understanding hydrological responses to climate change and land use and land cover change (LULCC) is...
Influences of climatic change on the components of global hydrological cycle, including runoff and e...
Runoff and sediment loads from river basin are largely affected by the interplay of climate variabil...