The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological processes in a modular framework, following strict coding standards. It has been coupled to the ECHAM5 general circulation model, which has been slightly modified for this purpose. A 90-layer model setup up to 0.01 hPa was used at spectral T42 resolution to simulate the lower and middle atmosphere. With the high vertical resolution the model simulates the Quasi-Biennial Oscillation. The model meteorology has been tested to check the influence of the changes to ECHAM5 and the radiation interactions with the new representation of atmospheric composition. In the simulations presented here a Newtonian relaxation technique was applied in the troposph...
The atmospheric-chemistry general circulation model ECHAM5/MESSy1 is evaluated with observations of ...
The atmospheric-chemistry general circulation model ECHAM5/MESSy1 is evaluated with observations of ...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pro...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pr...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pro...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
The coupled climate-chemistry model ECHAM4.L39(DLR)/CHEM is presented which enables a simultaneous...
The middle atmosphere is strongly affected by two of the world's most important environmental probl...
The middle atmosphere is strongly affected by two of the world's most important environmental probl...
An interactively coupled climate-chemistry model which enables a simultaneous treatment of meteorolo...
The chemistry climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
The chemistry-climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The atmospheric-chemistry general circulation model ECHAM5/MESSy1 is evaluated with observations of ...
The atmospheric-chemistry general circulation model ECHAM5/MESSy1 is evaluated with observations of ...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pro...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pr...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pro...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
The coupled climate-chemistry model ECHAM4.L39(DLR)/CHEM is presented which enables a simultaneous...
The middle atmosphere is strongly affected by two of the world's most important environmental probl...
The middle atmosphere is strongly affected by two of the world's most important environmental probl...
An interactively coupled climate-chemistry model which enables a simultaneous treatment of meteorolo...
The chemistry climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
The chemistry-climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The atmospheric-chemistry general circulation model ECHAM5/MESSy1 is evaluated with observations of ...
The atmospheric-chemistry general circulation model ECHAM5/MESSy1 is evaluated with observations of ...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...