Land surface processes and their coupling to the atmosphere over the Tibetan Plateau (TP) play an important role in modulating the regional and global climate. Therefore, identifying and quantifying uncertainty in these land surface model (LSM) processes are essential for improving climate models. The specifications of land cover and soil texture types, intertwined with the uncertainties in associated vegetation and soil parameters in LSMs, are significant sources of uncertainty due to the lack of detailed land survey in the TP. To differentiate the effects of land cover or soil texture specifications in the Noah with Multiple Parameterizations (Noah-MP) LSM from the effects of uncertainties in the model parameters, this study first identif...
Soil texture data are the basic input parameters for many Earth System Models. As the largest middle...
Snowfall and the subsequent evolution of the snowpack play important roles in the cryospheric and hy...
Soil information (e.g., soil texture and porosity) from existing soil datasets over the Tibetan Plat...
This study examines the overall performance of the Noah with multiparameterization (Noah-MP) land su...
The Noah-MP land surface model adopts a multiparameterization framework to accommodate various alter...
Current land surface models still have difficulties with producing reliable surface heat fluxes and ...
The “warm-humid” climate change across the Tibetan Plateau (TP) has promoted grassland growth and an...
Soil moisture (SM) is a fundamental environmental variable for characterizing climate, land surface ...
Most current land surface models (LSMs) show poor performance in soil water and temperature simulati...
The spatial distribution and fractional cover of plant functional types (PFTs) is a key uncertainty ...
The snowpack evolution has a significant impact on the water cycle and energy exchange at the waters...
Runoff parameterizations currently adopted by the (i) Noah‐MP model, (ii) Community Land Model (CLM)...
Earth's land cover (LC) has significant influence on land-atmospheric processes and affects the clim...
Abstract Soil water and heat transfer is especially complicated during the freezing and thawing proc...
We perform a land-surface model intercomparison to investigate how the simulation of permafrost area...
Soil texture data are the basic input parameters for many Earth System Models. As the largest middle...
Snowfall and the subsequent evolution of the snowpack play important roles in the cryospheric and hy...
Soil information (e.g., soil texture and porosity) from existing soil datasets over the Tibetan Plat...
This study examines the overall performance of the Noah with multiparameterization (Noah-MP) land su...
The Noah-MP land surface model adopts a multiparameterization framework to accommodate various alter...
Current land surface models still have difficulties with producing reliable surface heat fluxes and ...
The “warm-humid” climate change across the Tibetan Plateau (TP) has promoted grassland growth and an...
Soil moisture (SM) is a fundamental environmental variable for characterizing climate, land surface ...
Most current land surface models (LSMs) show poor performance in soil water and temperature simulati...
The spatial distribution and fractional cover of plant functional types (PFTs) is a key uncertainty ...
The snowpack evolution has a significant impact on the water cycle and energy exchange at the waters...
Runoff parameterizations currently adopted by the (i) Noah‐MP model, (ii) Community Land Model (CLM)...
Earth's land cover (LC) has significant influence on land-atmospheric processes and affects the clim...
Abstract Soil water and heat transfer is especially complicated during the freezing and thawing proc...
We perform a land-surface model intercomparison to investigate how the simulation of permafrost area...
Soil texture data are the basic input parameters for many Earth System Models. As the largest middle...
Snowfall and the subsequent evolution of the snowpack play important roles in the cryospheric and hy...
Soil information (e.g., soil texture and porosity) from existing soil datasets over the Tibetan Plat...