A coupled sulfur chemistry-cloud microphysics scheme (COUPL) is used to study the impact of sulfate aerosols on cloud lifetime and albedo. The cloud microphysics scheme includes precipitation formation, which depends on the cloud droplet number concentration (CDNC) and on the liquid water content. On the basis of different observational data sets, CDNC is proportional to the sulfate aerosol mass, which is calculated by the model. Cloud cover is a function of relative humidity only. Additional sensitivity experiments with another cloud cover parameterization (COUPL-CC), which also depends on cloud water, and with a different autoconversion rate of cloud droplets (COUPL-CC-Aut) are conducted to investigate the range of the indirect effect due...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
Aerosol-cloud interactions (ACI) represent a significant source of forcing uncertainty in global cli...
Aerosols have a large potential to influence climate through their effects on the microphysics and o...
Abstract. A coupled sulfur chemistry-cloud microphysics cheme (COUPL) is used to study the impact of...
A coupled sulfur chemistry - cloud microphysics scheme (PCI) is used to study the impact of sulfate ...
Here the authors have used the output of a chemistry/transport model to identify a situation in whic...
We describe the coupling of the Goddard Institute for Space Studies (GISS) general circulation model...
Oxidation of sulfur dioxide (SO₂) in cloud water by reaction with ozone is an important sulfate aero...
The atmospheric general circulation model ECHAM-4 is coupled to a chemistry model to calculate sulfa...
In this paper a prognostic equation for the number of cloud droplets (CDNC) is introduced into the E...
Aerosols affect climate through direct and indirect effects. The direct effect of aerosols (e.g., su...
Satellite-based cloud top effective radius retrieved by the CERES Science Team were combined with si...
This research work is a joint effort between research groups at the Battelle Pacific Northwest Labor...
The climatic effect of geoengineered stratospheric sulfate aerosol depends on the strategy for sulfu...
International audienceWe use the new GLOMAP model of global aerosol microphysics to investigate the ...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
Aerosol-cloud interactions (ACI) represent a significant source of forcing uncertainty in global cli...
Aerosols have a large potential to influence climate through their effects on the microphysics and o...
Abstract. A coupled sulfur chemistry-cloud microphysics cheme (COUPL) is used to study the impact of...
A coupled sulfur chemistry - cloud microphysics scheme (PCI) is used to study the impact of sulfate ...
Here the authors have used the output of a chemistry/transport model to identify a situation in whic...
We describe the coupling of the Goddard Institute for Space Studies (GISS) general circulation model...
Oxidation of sulfur dioxide (SO₂) in cloud water by reaction with ozone is an important sulfate aero...
The atmospheric general circulation model ECHAM-4 is coupled to a chemistry model to calculate sulfa...
In this paper a prognostic equation for the number of cloud droplets (CDNC) is introduced into the E...
Aerosols affect climate through direct and indirect effects. The direct effect of aerosols (e.g., su...
Satellite-based cloud top effective radius retrieved by the CERES Science Team were combined with si...
This research work is a joint effort between research groups at the Battelle Pacific Northwest Labor...
The climatic effect of geoengineered stratospheric sulfate aerosol depends on the strategy for sulfu...
International audienceWe use the new GLOMAP model of global aerosol microphysics to investigate the ...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
Aerosol-cloud interactions (ACI) represent a significant source of forcing uncertainty in global cli...
Aerosols have a large potential to influence climate through their effects on the microphysics and o...