This simulation-based research produces a set of forecast land use data of Qinghai Province, China, applying the land use change dynamics (LUCD) model. The simulation results show that the land use pattern will almost keep being consistent in the period from 2010 to 2050 with that in 2000 in Qinghai Province. Grassland and barren or sparsely vegetated land will cover more than 80% of the province's total area. The land use change will be inconspicuous in the period from 2010 to 2050 involving only 0.49% of the province's land. The expansion of urban and built-up land, grassland, and barren or sparsely vegetated land and the area reduction of mixed dryland/irrigated cropland and pasture, water bodies, and snow or ice will dominate land use c...
Global land use structure is changing rapidly due to unceasing population growth and accelerated urb...
China National Natural Science Funds for Distinguished Young Scholar 71225005;National Key Program ...
Heilongjiang Province is under the pressure of a water shortage due to climate change, population gr...
This simulation-based research produces a set of forecast land use data of Qinghai Province, China, ...
Land use change and climate change are two major global modifications of our environment and are pre...
A regional climate model (RegCM3) nested within ERA40 re-analyzed data is used to investigate the cl...
The drylands in northern China are expected to face dramatic land system change in the context of so...
This study applies the Dynamics of Land System (DLS) model to simulating the land cover under the de...
This paper presents a model for simulating country-wide changes in the land use pattern of China. It...
The regional climate model RegCM4 was used to investigate the regional climate effects of land cover...
Land Use/Land Cover change (LUCC) is a key aspect of global environmental change, which has a signif...
Land use change affected by wide ranges of human activities is a key driver of global climate change...
The Qinghai Lake Basin (QLB), located in the northeastern part of the Qinghai–Tibet Plateau, has a f...
To adapt to future climate change, appropriate land use patterns are desired. Potential natural vege...
Single research methodologies do not suffice for a complete analysis of land-use change. Instead, a ...
Global land use structure is changing rapidly due to unceasing population growth and accelerated urb...
China National Natural Science Funds for Distinguished Young Scholar 71225005;National Key Program ...
Heilongjiang Province is under the pressure of a water shortage due to climate change, population gr...
This simulation-based research produces a set of forecast land use data of Qinghai Province, China, ...
Land use change and climate change are two major global modifications of our environment and are pre...
A regional climate model (RegCM3) nested within ERA40 re-analyzed data is used to investigate the cl...
The drylands in northern China are expected to face dramatic land system change in the context of so...
This study applies the Dynamics of Land System (DLS) model to simulating the land cover under the de...
This paper presents a model for simulating country-wide changes in the land use pattern of China. It...
The regional climate model RegCM4 was used to investigate the regional climate effects of land cover...
Land Use/Land Cover change (LUCC) is a key aspect of global environmental change, which has a signif...
Land use change affected by wide ranges of human activities is a key driver of global climate change...
The Qinghai Lake Basin (QLB), located in the northeastern part of the Qinghai–Tibet Plateau, has a f...
To adapt to future climate change, appropriate land use patterns are desired. Potential natural vege...
Single research methodologies do not suffice for a complete analysis of land-use change. Instead, a ...
Global land use structure is changing rapidly due to unceasing population growth and accelerated urb...
China National Natural Science Funds for Distinguished Young Scholar 71225005;National Key Program ...
Heilongjiang Province is under the pressure of a water shortage due to climate change, population gr...