The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now extended for simulations of convective clouds. The performance of the newly implemented parameterization in simulating midlatitude continental summertime convective cloud systems is evaluated in this paper at the Atmospheric Radiation Measurement Program (ARM) Southern Great Plains (SGP) site in Oklahoma using the single-column mode (SCM) of ECHAM5. Three ARM intensive operating periods (IOPs), including two summer ones and a late spring one, are used for the evaluation. Results show that the SCM simulated cloud cover fraction agrees well with observations. The SCM also captures most of the precipitation events. With the new microphysical parame...
The double-moment cloud microphysics scheme from ECHAM4 has been coupled to the size-resolved aeroso...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
Uncertainties in representing the atmospheric water cycle are major obstacles to the accurate predic...
[1] The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now...
[1] The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now...
The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now ext...
International audienceAerosols affect the climate system by changing cloud characteristics in many w...
International audienceAerosols affect the climate system by changing cloud characteristics in many w...
International audienceA convective cloud field model (CCFM) is substituted for a standard mass flux ...
Our approach involved validating parameterizations directly against measurements from field programs...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios a...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 has been coupled to the size-resolved aeroso...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
Uncertainties in representing the atmospheric water cycle are major obstacles to the accurate predic...
[1] The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now...
[1] The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now...
The microphysical parameterization used for stratiform clouds in the ECHAM5 climate model is now ext...
International audienceAerosols affect the climate system by changing cloud characteristics in many w...
International audienceAerosols affect the climate system by changing cloud characteristics in many w...
International audienceA convective cloud field model (CCFM) is substituted for a standard mass flux ...
Our approach involved validating parameterizations directly against measurements from field programs...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios a...
The double-moment cloud microphysics scheme from ECHAM4 that predicts both the mass mixing ratios an...
The double-moment cloud microphysics scheme from ECHAM4 has been coupled to the size-resolved aeroso...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
Uncertainties in representing the atmospheric water cycle are major obstacles to the accurate predic...