Xuerui Gao
Biographic Data
| ID | 6277674 |
|---|---|
| NAME | Xuerui Gao |
| GIVEN NAMES | Xuerui |
| FAMILY NAME | Gao |
| SIGNATURE | GAO X |
| AFFILIATIONS | Institute of Soil and Water Conservation Northwest A&F University Yangling PR China |
| ORCID | 0000-0002-9985-9995 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 4 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2018 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 1 |
Vegetation Optimization Methods Considering Water Supply Security, Vegetation Carbon Sequestration, and Sediment Reduction Benefits
Since the implementation of the Grain for Green program on the Loess Plateau, vegetation restoration has achieved a remarkable effect. However, large‐scale vegetation restoration will inevitably result in massive water resources consumption in arid and semi‐arid regions, which will increase the risk of water security for regional social and economic development. How to safeguard the water resources required for socioeconomic development in the ba…
Evolution of the water–carbon relationship at basin scale under the background of a vegetation restoration program
Vegetation restoration is an important means for regional climate change mitigation and terrestrial carbon sequestration. However, large‐scale vegetation restoration in arid and semiarid regions can excessively consume local water resources, thus threatening regional water supply safety. To explore the impact of vegetation restoration on the water–carbon relationship in the Loess Plateau in China before and after the implementation of the Grain‐f…
Attribution analysis of climatic and multiple anthropogenic causes of runoff change in the Loess Plateau—A case‐study of the Jing River Basin
Over the past five decades, under the joint influence of climate change and human activity, river runoff in most areas of Loess Plateau showed a significant declining trend, which poses a great threat to ecological security and land degradation and soil erosion control. To identify the key factors controlling this decline and quantify the contribution rates of the multiple factors, a runoff simulation was established based on the Soil Water Asses…
Study on Water Suitability of Apple Plantations in the Loess Plateau under Climate Change
With the implementation of the Grain for Green Project, the apple plantation area is increasing in Loess Plateau. However, due to severe water scarcity, the sustainability of apple tree growth is threatened. In this paper, we used meteorological data (1990−2013) and forecasted climate data (2019−2050) to estimate water demand and establish a water suitability model to study the water balance between available water and water consumption of the ap…
A study on the spatial and temporal variability of the urban residential water consumption and its influencing factors in the major cities of China
Study on Water Suitability of Apple Plantations in the Loess Plateau under Climate Change
With the implementation of the Grain for Green Project, the apple plantation area is increasing in Loess Plateau. However, due to severe water scarcity, the sustainability of apple tree growth is threatened. In this paper, we used meteorological data (1990−2013) and forecasted climate data (2019−2050) to estimate water demand and establish a water suitability model to study the water balance between available water and water consumption of the ap…
A study on the spatial and temporal variability of the urban residential water consumption and its influencing factors in the major cities of China
Attribution analysis of climatic and multiple anthropogenic causes of runoff change in the Loess Plateau—A case‐study of the Jing River Basin
Over the past five decades, under the joint influence of climate change and human activity, river runoff in most areas of Loess Plateau showed a significant declining trend, which poses a great threat to ecological security and land degradation and soil erosion control. To identify the key factors controlling this decline and quantify the contribution rates of the multiple factors, a runoff simulation was established based on the Soil Water Asses…
Evolution of the water–carbon relationship at basin scale under the background of a vegetation restoration program
Vegetation restoration is an important means for regional climate change mitigation and terrestrial carbon sequestration. However, large‐scale vegetation restoration in arid and semiarid regions can excessively consume local water resources, thus threatening regional water supply safety. To explore the impact of vegetation restoration on the water–carbon relationship in the Loess Plateau in China before and after the implementation of the Grain‐f…
Vegetation Optimization Methods Considering Water Supply Security, Vegetation Carbon Sequestration, and Sediment Reduction Benefits
Since the implementation of the Grain for Green program on the Loess Plateau, vegetation restoration has achieved a remarkable effect. However, large‐scale vegetation restoration will inevitably result in massive water resources consumption in arid and semi‐arid regions, which will increase the risk of water security for regional social and economic development. How to safeguard the water resources required for socioeconomic development in the ba…
Ecology (5 works) · Environmental Science (5 works) · Geography (5 works) · Geology (4 works) · Hydrology and Watershed Management Studies (4 works) · Climate change (3 works) · Drainage basin (3 works) · Loess (3 works) · Loess plateau (3 works) · Physical geography (3 works)