Agricultural conversion of land and rapid urbanization are the primary drivers of land cover and land use change (LCLUC) globally, resulting in massive deforestation, drainage of wetlands, effects on the water cycle, alteration of sediment budgets, and acceleration of land degradation and desertification. This has taken place across various spatial and temporal scales. This chapter provides an overview of hydrological impact of land use change at these multiple scales. It also reviews the state of the art in analyzing LCLUC impacts on water quality outcomes and showcases where different techniques have been used to reveal the relationship between the two. Finally, the chapter addresses the impacts LCLUC generated within entire basins can ha...
Understanding the hydrological impacts of land use and land cover (LULC) changes is significant for ...
Human impacts on global terrestrial hydrology have been accelerating during the 20th century. These...
Anthropically-induced land-use/land cover (LULC) changes create an imbalance between water and energ...
Agricultural conversion of land and rapid urbanization are the primary drivers of land cover and lan...
Land use change has significant impacts on watershed hydrology because an increase in impervious/urb...
Land Use and Land Cover (LULC) change, such as conversion of natural vegetation into agricultural la...
This research aimed to evaluate the impact of land cover/use changes on watershed responses and hydr...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Land use and land cover (LULC) are driving forces that potentially exert pressures on water bodies, ...
We analyzed impacts of interannual disturbance on the water balance of watersheds in different fores...
The hydrologic cycle is a recurring consequence of different forms of movement of water and changes ...
Assessment of the long-term hydrologic impacts of land use change is important for optimizing manage...
The connections between environmental change and human activities are complex. Scientists have been ...
We present an integrated model of the direct consequences of climate change on land use, and the ind...
Understanding the hydrological impacts of land use and land cover (LULC) changes is significant for ...
Human impacts on global terrestrial hydrology have been accelerating during the 20th century. These...
Anthropically-induced land-use/land cover (LULC) changes create an imbalance between water and energ...
Agricultural conversion of land and rapid urbanization are the primary drivers of land cover and lan...
Land use change has significant impacts on watershed hydrology because an increase in impervious/urb...
Land Use and Land Cover (LULC) change, such as conversion of natural vegetation into agricultural la...
This research aimed to evaluate the impact of land cover/use changes on watershed responses and hydr...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Long-term intensive land use/cover changes (LUCCs) of the Yellow River Delta (YRD) have been happeni...
Land use and land cover (LULC) are driving forces that potentially exert pressures on water bodies, ...
We analyzed impacts of interannual disturbance on the water balance of watersheds in different fores...
The hydrologic cycle is a recurring consequence of different forms of movement of water and changes ...
Assessment of the long-term hydrologic impacts of land use change is important for optimizing manage...
The connections between environmental change and human activities are complex. Scientists have been ...
We present an integrated model of the direct consequences of climate change on land use, and the ind...
Understanding the hydrological impacts of land use and land cover (LULC) changes is significant for ...
Human impacts on global terrestrial hydrology have been accelerating during the 20th century. These...
Anthropically-induced land-use/land cover (LULC) changes create an imbalance between water and energ...