The purpose of this study is to investigate hydrometeorology changing patterns impacts on erosive landforms evolution in Loess Plateau in the past 60 years (1950–2010). We firstly describe hydrometeorology changing patterns (rainfall-runoff-soil erosion response) at different time scales (daily, monthly, and yearly) in perspective of river basins and then further investigate hydrometeorology impacts on erosive landform through combined analysis of statistical quantification and proposed conceptual model of rainfall-runoff-soil erosion landform. Through the above investigations, the following findings are achieved. Firstly, it shows that annual runoff and sediment discharges decreased obviously although precipitation remained at the same lev...
The “Grain for Green” project (GGP) was launched in 1999 on China’s Loess Plateau to reduce soil ero...
Soil erosion is one of the most serious land degradation problems and the primary environmental issu...
The impacts of climate change on hydrological cycles and water resource distribution is particularly...
Rainfall erosivity is one of the key factors influencing soil erosion by water. Improved knowledge o...
The flow-sediment relationship is important to understand the soil erosion and land degradation proc...
Attributing soil erosion to land management and climatic drivers is important for global policy deve...
Within China's Loess Plateau there have been concerted revegetation efforts and engineering measures...
Climate change and human activities are strongly influencing the eco-hydrological processes of the C...
Evaluating the effects of soil and water conservation on the Chinese Loess Plateau (CLP) during the ...
A Holocene loess profile to the west of Xi'an China was studied multi-disciplinarily to investigate ...
Geomorphologic characteristics of a basin affect mass movement, water and sediment transport. The pu...
The Chinese Loess Plateau is one of the most rapidly eroding regions in the world. The purpose of th...
Ecological environment investigation and assessment in ten years in the zone of major ecological pro...
Variations and regional differences in land surface processes during the Anthropocene have directly ...
Catchments in the Loess Plateau have been under the influence of human activities for centuries. In ...
The “Grain for Green” project (GGP) was launched in 1999 on China’s Loess Plateau to reduce soil ero...
Soil erosion is one of the most serious land degradation problems and the primary environmental issu...
The impacts of climate change on hydrological cycles and water resource distribution is particularly...
Rainfall erosivity is one of the key factors influencing soil erosion by water. Improved knowledge o...
The flow-sediment relationship is important to understand the soil erosion and land degradation proc...
Attributing soil erosion to land management and climatic drivers is important for global policy deve...
Within China's Loess Plateau there have been concerted revegetation efforts and engineering measures...
Climate change and human activities are strongly influencing the eco-hydrological processes of the C...
Evaluating the effects of soil and water conservation on the Chinese Loess Plateau (CLP) during the ...
A Holocene loess profile to the west of Xi'an China was studied multi-disciplinarily to investigate ...
Geomorphologic characteristics of a basin affect mass movement, water and sediment transport. The pu...
The Chinese Loess Plateau is one of the most rapidly eroding regions in the world. The purpose of th...
Ecological environment investigation and assessment in ten years in the zone of major ecological pro...
Variations and regional differences in land surface processes during the Anthropocene have directly ...
Catchments in the Loess Plateau have been under the influence of human activities for centuries. In ...
The “Grain for Green” project (GGP) was launched in 1999 on China’s Loess Plateau to reduce soil ero...
Soil erosion is one of the most serious land degradation problems and the primary environmental issu...
The impacts of climate change on hydrological cycles and water resource distribution is particularly...