The change in the type of vegetation fraction can induce major changes in the local effects such as local evaporation, surface radiation, etc., that in turn induces changes in the model simulated outputs. The present study deals with the effects of vegetation in climate modeling over the Indian region using the MM5 mesoscale model. The main objective of the present study is to investigate the impact of vegetation dataset derived from SPOT satellite by ISRO (Indian Space Research Organization) versus that of USGS (United States Geological Survey) vegetation dataset on the simulation of the Indian summer monsoon. The present study has been conducted for five monsoon seasons (1998-2002), giving emphasis over the two contrasting southwest monso...
This work targets important couplings in the South Asian monsoon system at interannual or longer tim...
Community Land Model version 2 (CLM2) as a comprehensive land surface model and a simple land surfac...
The Indian summer monsoon (ISM) simulated over the 1989–2009 period with a new 0.75° ocean–atmospher...
The change in the type of vegetation fraction can induce major changes in the local effects such as ...
The impact of different land-surface parameterisation schemes for the simulation of monsoon circulat...
© 2019 Dr. Chih-Chung ChouIndian Summer Monsoon Rainfall (ISMR) contributes to approximately 80% of ...
Daily moderate rainfall events, which constitute a major portion of seasonal summer monsoon rainfall...
Soil moisture is one of the key components of land surface processes and a potential source of atmos...
Daily moderate rainfall events, which constitute a major portion of seasonal summer monsoon rainfall...
Whether enhanced land surface representation can improve the ability of mesoscale weather forecast m...
This study investigates land-atmosphere coupling over South Asia during the premonsoon and monsoon s...
For the first time for CORDEX-South Asia, a high-resolution regional earth system model (ROM) is adop...
A Land Surface Model (LSM) has been included in the ECHAM4 Atmospheric General Circulation Model (AG...
This study assess the performance of two versions of Regional Climate Model (RegCM) in simulating th...
A land surface model (LSM) has been included in the ECMWF Hamburg version 4 (ECHAM4) atmospheric gen...
This work targets important couplings in the South Asian monsoon system at interannual or longer tim...
Community Land Model version 2 (CLM2) as a comprehensive land surface model and a simple land surfac...
The Indian summer monsoon (ISM) simulated over the 1989–2009 period with a new 0.75° ocean–atmospher...
The change in the type of vegetation fraction can induce major changes in the local effects such as ...
The impact of different land-surface parameterisation schemes for the simulation of monsoon circulat...
© 2019 Dr. Chih-Chung ChouIndian Summer Monsoon Rainfall (ISMR) contributes to approximately 80% of ...
Daily moderate rainfall events, which constitute a major portion of seasonal summer monsoon rainfall...
Soil moisture is one of the key components of land surface processes and a potential source of atmos...
Daily moderate rainfall events, which constitute a major portion of seasonal summer monsoon rainfall...
Whether enhanced land surface representation can improve the ability of mesoscale weather forecast m...
This study investigates land-atmosphere coupling over South Asia during the premonsoon and monsoon s...
For the first time for CORDEX-South Asia, a high-resolution regional earth system model (ROM) is adop...
A Land Surface Model (LSM) has been included in the ECHAM4 Atmospheric General Circulation Model (AG...
This study assess the performance of two versions of Regional Climate Model (RegCM) in simulating th...
A land surface model (LSM) has been included in the ECMWF Hamburg version 4 (ECHAM4) atmospheric gen...
This work targets important couplings in the South Asian monsoon system at interannual or longer tim...
Community Land Model version 2 (CLM2) as a comprehensive land surface model and a simple land surfac...
The Indian summer monsoon (ISM) simulated over the 1989–2009 period with a new 0.75° ocean–atmospher...