The climatic effects of various types of aerosol in China have been investigated by using the atmospheric general circulation model (AGCM) developed at the University of California, Los Angeles (UCLA). The model includes an efficient and physically based radiation parameterization scheme specifically developed for application to clouds and aerosols. Simulation results show that inclusion of a background aerosol optical depth of 0.2 reduces the global mean net surface solar flux by about 5 W m2 and produces a decrease in precipitation in the tropics as a result of decreased temperature contrast between this area and the middle to high latitudes, which suppresses tropical convection. These decreases have partially corrected the overestimates ...
It is known that aerosol and precursor gas emissions over East Asia may be underestimated by 50% due...
International audienceBlack carbon (BC) aerosol emission is an important contributor to particulate ...
The National Center for Atmospheric Research Community Atmosphere Model (version 3.5) coupled with t...
[1] The climatic effects of various types of aerosol in China have been investigated by using the at...
The response of East Asian Summer Monsoon (EASM) precipitation to long term changes of anthropogenic...
International audienceAn interactive system coupling the Beijing Climate Center atmospheric general ...
AbstractCarbonaceous aerosol is one of the main ingredients of the atmospheric aerosol, which includ...
Fast growth of air pollution was experienced in China during the past decades, resulting in extremel...
We investigated the effects of man‐made air pollutants on the climate of East Asia, focusing on east...
Using outputs from 10 CMIP5 models with fixed sea surface temperature, we investigate the fast respo...
The direct radiative effect (DRE) of multiple aerosol species [sulfate, nitrate, ammonium, black car...
The latest regional climate model version 4 (RegCM4) coupled with a dust module developed at the Int...
Variations of the East Asian winter monsoon (EAWM) induced by dust aerosol are studied by using a re...
In this paper, based on the principle of Mie scattering, we calculated the optical parameters of BC ...
The latest regional climate model version 4 (RegCM4) coupled with a dust module developed at the Int...
It is known that aerosol and precursor gas emissions over East Asia may be underestimated by 50% due...
International audienceBlack carbon (BC) aerosol emission is an important contributor to particulate ...
The National Center for Atmospheric Research Community Atmosphere Model (version 3.5) coupled with t...
[1] The climatic effects of various types of aerosol in China have been investigated by using the at...
The response of East Asian Summer Monsoon (EASM) precipitation to long term changes of anthropogenic...
International audienceAn interactive system coupling the Beijing Climate Center atmospheric general ...
AbstractCarbonaceous aerosol is one of the main ingredients of the atmospheric aerosol, which includ...
Fast growth of air pollution was experienced in China during the past decades, resulting in extremel...
We investigated the effects of man‐made air pollutants on the climate of East Asia, focusing on east...
Using outputs from 10 CMIP5 models with fixed sea surface temperature, we investigate the fast respo...
The direct radiative effect (DRE) of multiple aerosol species [sulfate, nitrate, ammonium, black car...
The latest regional climate model version 4 (RegCM4) coupled with a dust module developed at the Int...
Variations of the East Asian winter monsoon (EAWM) induced by dust aerosol are studied by using a re...
In this paper, based on the principle of Mie scattering, we calculated the optical parameters of BC ...
The latest regional climate model version 4 (RegCM4) coupled with a dust module developed at the Int...
It is known that aerosol and precursor gas emissions over East Asia may be underestimated by 50% due...
International audienceBlack carbon (BC) aerosol emission is an important contributor to particulate ...
The National Center for Atmospheric Research Community Atmosphere Model (version 3.5) coupled with t...