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On the impact of recent developments of the LMDz atmospheric general circulation model on the simulation of CO2 transport

  • Marine Remaud
  • , Frédéric Chevallier
  • , Anne Cozic
  • , Xin Lin
  • , Philippe Bousquet

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

© Author(s) 2018.The quality of the representation of greenhouse gas (GHG) transport in atmospheric general circulation models (GCMs) drives the potential of inverse systems to retrieve GHG surface fluxes to a large extent. In this work, the transport of CO2 is evaluated in the latest version of the Laboratoire de Météorologie Dynamique (LMDz) GCM, developed for the Climate Model Intercomparison Project 6 (CMIP6) relative to the LMDz version developed for CMIP5. Several key changes have been implemented between the two versions, which include a more elaborate radiative scheme, new subgrid-scale parameterizations of convective and boundary layer processes and a refined vertical resolution. We performed a set of simulations of LMDz with different physical parameterizations, two different horizontal resolutions and different land surface schemes, in order to test the impact of those different configurations on the overall transport simulation. By modulating the intensity of vertical mixing, the physical parameterizations control the interhemispheric gradient and the amplitude of the seasonal cycle in the Northern Hemisphere, as emphasized by the comparison with observations at surface sites. However, the effect of the new parameterizations depends on the region considered, with a strong impact over South America (Brazil, Amazonian forest) but a smaller impact over Europe, East Asia and North America. A finer horizontal resolution reduces the representation errors at observation sites near emission hotspots or along the coastlines. In comparison, the sensitivities to the land surface model and to the increased vertical resolution are marginal.
Original languageEnglish
Pages (from-to)4489-4513
JournalGeoscientific Model Development
Volume11
Issue number11
DOIs
Publication statusPublished - 9 Nov 2018
Externally publishedYes

Funding

Acknowledgements. The authors thank the LMDz developers for maintaining the dynamism and creativity of this climate model. The present work was granted access to the HPC resources of TGCC under the allocation A0030102201. It was funded by the Copernicus Atmosphere Monitoring Service, implemented by the European Centre for Medium-Range Weather Forecasts (ECMWF) on behalf of the European Commission. We also gratefully acknowledge the many people who contributed atmospheric observations (aircraft and surface air sample measurements). OCO-2 retrievals were produced by the OCO-2 project at the Jet Propulsion Laboratory, California Institute of Technology, and obtained from the OCO-2 data archive maintained at the NASA Goddard Earth Science Data and Information Services Center. We also thank Martin Steinbacher, Luciana Gatti, Antoine Berchet and Matthew Lang for their comments on an earlier version of the text.

Funders
Copernicus Atmosphere Monitoring Service
European Commission

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 14 - Life Below Water
      SDG 14 Life Below Water

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