The double-moment cloud microphysics scheme from ECHAM4 has been coupled to the size-resolved aerosol scheme ECHAM5-HAM. ECHAM5-HAM predicts the aerosol mass and number concentrations and the aerosol mixing state. This results in a much better agreement with observed vertical profiles of the black carbon and aerosol mass mixing ratios than with the previous version ECHAM4, where only the different aerosol mass mixing ratios were predicted. Also, the simulated liquid, ice and total water content and the cloud droplet and ice crystal number concentrations as a function of temperature in stratiform mixed-phase clouds between 0 and –35°C agree much better with aircraft observations in the ECHAM5 simulations. ECHAM5 performs better because more ...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
Representing the number and mass of cloud and aerosol particles independently in a climate, weather ...
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...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
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...
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...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
Representing the number and mass of cloud and aerosol particles independently in a climate, weather ...
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...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
International audienceThe double-moment cloud microphysics scheme from ECHAM4 has been coupled to th...
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...
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...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
The aerosol-climate modelling system ECHAM5-HAM is introduced. It is based on a flexible microphysic...
Representing the number and mass of cloud and aerosol particles independently in a climate, weather ...