The chemistry-climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stratospheric reactive chemistry and state-of-the-art parameterizations of aerosols using either a modal scheme (M7) or a bin scheme (SALSA). This article describes and evaluates the model version ECHAM6.3-HAM2.3-MOZ1.0 with a focus on the tropospheric gas-phase chemistry. A 10-year model simulation was performed to test the stability of the model and provide data for its evaluation. The comparison to observations concentrates on the year 2008 and includes total column observations of ozone and CO from IASI and OMI, Aura MLS observations of temperature, HNO3, ClO, and O3 for the evaluation of polar stratospheric processes, an ozonesonde climatolo...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol- chemistry-climate model that includes fully i...
The Tropospheric Chemistry General Circulation model ECHAM5-MOZ was developed between 2001 and 2005 ...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
The chemistry–climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The chemistry–climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The chemistry climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The recently developed global chemistry climate model ECHAM6-HAMMOZ contains comprehensive and detai...
The recently developed global chemistry climate model ECHAM6-HAMMOZ contains comprehensive and detai...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pr...
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 pro...
Atmospheric composition of short-lived gases and aerosols is an important component of the global cl...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol-chemistry-climate model that includes fully in...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol-chemistry-climate model that includes fully in...
The Community Atmosphere Model (CAM), version 5, is now coupled to extensive tropospheric and strato...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol- chemistry-climate model that includes fully i...
The Tropospheric Chemistry General Circulation model ECHAM5-MOZ was developed between 2001 and 2005 ...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...
The chemistry–climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The chemistry–climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The chemistry climate model ECHAM-HAMMOZ contains a detailed representation of tropospheric and stra...
The recently developed global chemistry climate model ECHAM6-HAMMOZ contains comprehensive and detai...
The recently developed global chemistry climate model ECHAM6-HAMMOZ contains comprehensive and detai...
The new Modular Earth Submodel System (MESSy) describes atmospheric chemistry and meteorological pr...
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 pro...
Atmospheric composition of short-lived gases and aerosols is an important component of the global cl...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol-chemistry-climate model that includes fully in...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol-chemistry-climate model that includes fully in...
The Community Atmosphere Model (CAM), version 5, is now coupled to extensive tropospheric and strato...
In this paper, we introduce the ECHAM5-HAMMOZ aerosol- chemistry-climate model that includes fully i...
The Tropospheric Chemistry General Circulation model ECHAM5-MOZ was developed between 2001 and 2005 ...
International audienceThe new Modular Earth Submodel System (MESSy) describes atmospheric chemistry ...