Hydrological extremes are closely related to extreme hydrological events, which have been and continue to be one of the most important natural hazards causing great damage to lives and properties. As two of the main factors affecting the hydrological cycle, land-use change and climate change have attracted the attention of many researchers in recent years. However, there are few studies that comprehensively consider the impacts of land-use change and climate change on hydrological extremes, and few researchers have made a quantitative distinction between them. Regarding this problem, this study aims to quantitatively distinguish the effects of land-use change and climate change on hydrological extremes during the past half century using the...
To reveal the revolution law of hydrologic extremes in the next 50 years and analyze the impact of c...
Hydrologic cycle is changing under the impacts of climate change and intensifying human activities. ...
The runoff in the upper reaches of the Heihe River has been continuously abundant for more than a de...
Changes in the hydrological systems are expected due to climate change resulting from enhanced green...
Changes in the hydrological systems are expected due to climate change resulting from enhanced green...
Changes in the hydrological systems are expected due to climate change resulting from enhanced green...
The climate change and Land Use/Land Cover (LULC) change both have an important impact on the rainfa...
The Tarim river basin in China is a huge inland arid basin, which is expected to be highly vulnerabl...
Climate change may affect water resources by altering various processes in natural ecosystems. Dynam...
Climate change may affect water resources by altering various processes in natural ecosystems. Dynam...
The Huolin River is located in the monsoon marginal zone in Northeast China. It is an important sour...
Investigation of changes in the rainfall-runoff regimes of rivers and its extremes has become more i...
Investigation of changes in the rainfall-runoff regimes of rivers and its extremes has become more i...
The Tarim river basin in China is a huge inland arid basin, which is expected to be highly vulnerabl...
Hydrological extremes regularly occur in all regions of the world and as such have large impacts on ...
To reveal the revolution law of hydrologic extremes in the next 50 years and analyze the impact of c...
Hydrologic cycle is changing under the impacts of climate change and intensifying human activities. ...
The runoff in the upper reaches of the Heihe River has been continuously abundant for more than a de...
Changes in the hydrological systems are expected due to climate change resulting from enhanced green...
Changes in the hydrological systems are expected due to climate change resulting from enhanced green...
Changes in the hydrological systems are expected due to climate change resulting from enhanced green...
The climate change and Land Use/Land Cover (LULC) change both have an important impact on the rainfa...
The Tarim river basin in China is a huge inland arid basin, which is expected to be highly vulnerabl...
Climate change may affect water resources by altering various processes in natural ecosystems. Dynam...
Climate change may affect water resources by altering various processes in natural ecosystems. Dynam...
The Huolin River is located in the monsoon marginal zone in Northeast China. It is an important sour...
Investigation of changes in the rainfall-runoff regimes of rivers and its extremes has become more i...
Investigation of changes in the rainfall-runoff regimes of rivers and its extremes has become more i...
The Tarim river basin in China is a huge inland arid basin, which is expected to be highly vulnerabl...
Hydrological extremes regularly occur in all regions of the world and as such have large impacts on ...
To reveal the revolution law of hydrologic extremes in the next 50 years and analyze the impact of c...
Hydrologic cycle is changing under the impacts of climate change and intensifying human activities. ...
The runoff in the upper reaches of the Heihe River has been continuously abundant for more than a de...