Representation of atmospheric transport is a major source of error in the estimation of greenhouse gas sources and sinks by inverse modelling. Here we assess the impact on trace gas mole fractions of the new physical parameterizations recently implemented in the atmospheric global climate model LMDz to improve vertical diffusion, mesoscale mixing by thermal plumes in the planetary boundary layer (PBL), and deep convection in the troposphere. At the same time, the horizontal and vertical resolution of the model used in the inverse system has been increased. The aim of this paper is to evaluate the impact of these developments on the representation of trace gas transport and chemistry, and to anticipate the implications for inversions of gree...
International audienceWith the densification of surface observing networks and the development of re...
The global ECHAM5/MESSy Atmospheric Chemistry (EMAC) Model is equipped with the Lagrangian transpor...
We have developed an improved version of the National Institute for Environmental Studies (NIES) thr...
Representation of atmospheric transport is a major source of error in the estimation of greenhouse g...
Representation of atmospheric transport is a major source of error in the estimation of greenhouse g...
A better knowledge of the methane biogeochemical cycle is fundamental for a betterunderstanding of c...
Une meilleure connaissance du cycle biogéochimique du méthane est un élémentfondamental dans la comp...
International audienceThe quality of the representation of greenhouse gas (GHG) transport in atmosph...
The quality of the representation of greenhouse gas (GHG) transport in atmospheric general circulat...
In order to tackle climate change, the scientific community needs to understand the dominant process...
Models of atmospheric transport can be used to interpret spatiotemporal differences in the observed ...
International audienceWith the densification of surface observing networks and the development of re...
The global ECHAM5/MESSy Atmospheric Chemistry (EMAC) Model is equipped with the Lagrangian transpor...
We have developed an improved version of the National Institute for Environmental Studies (NIES) thr...
Representation of atmospheric transport is a major source of error in the estimation of greenhouse g...
Representation of atmospheric transport is a major source of error in the estimation of greenhouse g...
A better knowledge of the methane biogeochemical cycle is fundamental for a betterunderstanding of c...
Une meilleure connaissance du cycle biogéochimique du méthane est un élémentfondamental dans la comp...
International audienceThe quality of the representation of greenhouse gas (GHG) transport in atmosph...
The quality of the representation of greenhouse gas (GHG) transport in atmospheric general circulat...
In order to tackle climate change, the scientific community needs to understand the dominant process...
Models of atmospheric transport can be used to interpret spatiotemporal differences in the observed ...
International audienceWith the densification of surface observing networks and the development of re...
The global ECHAM5/MESSy Atmospheric Chemistry (EMAC) Model is equipped with the Lagrangian transpor...
We have developed an improved version of the National Institute for Environmental Studies (NIES) thr...