The influence of anthropogenic emissions on aerosol distributions and the hydrological cycle are examined with a focus on monsoon precipitation over the Indian subcontinent, during January 2001 to December 2005, using the European Centre for Medium-Range Weather Forecasts-Hamburg (ECHAM5.5) general circulation model extended by the Hamburg Aerosol Module (HAM). The seasonal variability of aerosol optical depth (AOD) retrieved from the MODerate Resolution Imaging Spectroradiometer (MODIS) on board the Terra and Aqua satellite is broadly well simulated (R 0.6–0.85) by the model. The spatial distribution and seasonal cycle of the precipitation observed over the Indian region are reasonably well simulated (R 0.5 to 0.8) by the model, while in t...
A regional climate model, WRFChem has been utilized to simulate aerosol and rainfall distribution ov...
We examine the aerosol radiative effects due to aerosols emitted from different emission sectors (an...
The impact of anthropogenic absorbing aerosols (such as soot) on the climate over the Indian region ...
The influence of anthropogenic emissions on aerosol distributions and the hydrological cycle are exa...
The influence of anthropogenic emissions on aerosol distributions and the hydrological cycle are exa...
The impact of anthropogenic absorbing aerosols (such as soot) on the climate over the Indian region ...
Aerosol forcing remains a dominant uncertainty in climate studies. The impact of aerosol direct radi...
A significant declining trend of post-monsoon season precipitation in South Asia is observed between...
A significant declining trend of post-monsoon season precipitation in South Asia is observed between...
The representation of aerosol processes and the skill in simulating the Asian summer monsoon vary wi...
The representation of aerosol processes and the skill in simulating the Asian summer monsoon vary wi...
International audienceThe impact of anthropogenic absorbing aerosols (such as soot) on the climate o...
The direct radiative effect of absorbing aerosols consists of absorption-induced atmospheric heating...
The direct radiative effect of absorbing aerosols consists of absorption-induced atmospheric heating...
An eight-member ensemble of ECHAM5-HAMMOZ simulations for a boreal summer season is analysed to stud...
A regional climate model, WRFChem has been utilized to simulate aerosol and rainfall distribution ov...
We examine the aerosol radiative effects due to aerosols emitted from different emission sectors (an...
The impact of anthropogenic absorbing aerosols (such as soot) on the climate over the Indian region ...
The influence of anthropogenic emissions on aerosol distributions and the hydrological cycle are exa...
The influence of anthropogenic emissions on aerosol distributions and the hydrological cycle are exa...
The impact of anthropogenic absorbing aerosols (such as soot) on the climate over the Indian region ...
Aerosol forcing remains a dominant uncertainty in climate studies. The impact of aerosol direct radi...
A significant declining trend of post-monsoon season precipitation in South Asia is observed between...
A significant declining trend of post-monsoon season precipitation in South Asia is observed between...
The representation of aerosol processes and the skill in simulating the Asian summer monsoon vary wi...
The representation of aerosol processes and the skill in simulating the Asian summer monsoon vary wi...
International audienceThe impact of anthropogenic absorbing aerosols (such as soot) on the climate o...
The direct radiative effect of absorbing aerosols consists of absorption-induced atmospheric heating...
The direct radiative effect of absorbing aerosols consists of absorption-induced atmospheric heating...
An eight-member ensemble of ECHAM5-HAMMOZ simulations for a boreal summer season is analysed to stud...
A regional climate model, WRFChem has been utilized to simulate aerosol and rainfall distribution ov...
We examine the aerosol radiative effects due to aerosols emitted from different emission sectors (an...
The impact of anthropogenic absorbing aerosols (such as soot) on the climate over the Indian region ...