Description of the Earth system model of intermediate complexity LOVECLIM version 1.2

peer reviewed The main characteristics of the new version 1.2 of the three-dimensional Earth system model of intermediate complexity LOVECLIM are briefly described. LOVECLIM 1.2 includes representations of the atmosphere, the ocean and sea ice, the land surface (including vegetation), the ice sheets...

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Published in:Geoscientific Model Development
Main Authors: Goosse, H., Brovkin, V., Fichefet, T., Haarsma, R., Huybrechts, P., Jongma, J., Mouchet, Anne, Selten, F., Barriat, P.-Y., Campin, J.-M., Deleersnijder, E., Driesschaert, E., Goelzer, H., Janssens, I., Loutre, M.-F., Morales Maqueda, M. A., Opsteegh, T., Mathieu, P.-P., Munhoven, Guy, Pettersson, E. J., Renssen, H., Roche, D. M., Schaeffer, M., Tartinville, B., Timmermann, A., Weber, S.
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2010
Subjects:
Online Access:https://orbi.uliege.be/handle/2268/75292
https://doi.org/10.5194/gmd-3-603-2010
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spelling ftorbi:oai:orbi.ulg.ac.be:2268/75292 2024-04-21T07:50:31+00:00 Description of the Earth system model of intermediate complexity LOVECLIM version 1.2 Goosse, H. Brovkin, V. Fichefet, T. Haarsma, R. Huybrechts, P. Jongma, J. Mouchet, Anne Selten, F. Barriat, P.-Y. Campin, J.-M. Deleersnijder, E. Driesschaert, E. Goelzer, H. Janssens, I. Loutre, M.-F. Morales Maqueda, M. A. Opsteegh, T. Mathieu, P.-P. Munhoven, Guy Pettersson, E. J. Renssen, H. Roche, D. M. Schaeffer, M. Tartinville, B. Timmermann, A. Weber, S. 2010 https://orbi.uliege.be/handle/2268/75292 https://doi.org/10.5194/gmd-3-603-2010 en eng Copernicus Publications http://www.geosci-model-dev.net/3/603/2010/ urn:issn:1991-959X urn:issn:1991-9603 https://orbi.uliege.be/handle/2268/75292 info:hdl:2268/75292 doi:10.5194/gmd-3-603-2010 scopus-id:2-s2.0-84891561209 restricted access http://purl.org/coar/access_right/c_16ec info:eu-repo/semantics/restrictedAccess Geoscientific Model Development, 3 (2), 603-633 (2010) Earth System Model Intermediate Complexity Physical chemical mathematical & earth Sciences Earth sciences & physical geography Physique chimie mathématiques & sciences de la terre Sciences de la terre & géographie physique journal article http://purl.org/coar/resource_type/c_6501 info:eu-repo/semantics/article peer reviewed 2010 ftorbi https://doi.org/10.5194/gmd-3-603-2010 2024-03-27T14:56:04Z peer reviewed The main characteristics of the new version 1.2 of the three-dimensional Earth system model of intermediate complexity LOVECLIM are briefly described. LOVECLIM 1.2 includes representations of the atmosphere, the ocean and sea ice, the land surface (including vegetation), the ice sheets, the icebergs and the carbon cycle. The atmospheric component is ECBilt2, a T21, 3-level quasi-geostrophic model. The ocean component is CLIO3, which consists of an ocean general circulation model coupled to a comprehensive thermodynamic-dynamic sea-ice model. Its horizontal resolution is of 3° by 3°, and there are 20 levels in the ocean. ECBilt-CLIO is coupled to VECODE, a vegetation model that simulates the dynamics of two main terrestrial plant functional types, trees and grasses, as well as desert. VECODE also simulates the evolution of the carbon cycle over land while the ocean carbon cycle is represented by LOCH, a comprehensive model that takes into account both the solubility and biological pumps. The ice sheet component AGISM is made up of a three-dimensional thermomechanical model of the ice sheet flow, a visco-elastic bedrock model and a model of the mass balance at the ice-atmosphere and ice-ocean interfaces. For both the Greenland and Antarctic ice sheets, calculations are made on a 10 km by 10 km resolution grid with 31 sigma levels. LOVECLIM1.2 reproduces well the major characteristics of the observed climate both for present-day conditions and for key past periods such as the last millennium, the mid-Holocene and the Last Glacial Maximum. However, despite some improvements compared to earlier versions, some biases are still present in the model. The most serious ones are mainly located at low latitudes with an overestimation of the temperature there, a too symmetric distribution of precipitation between the two hemispheres, and an overestimation of precipitation and vegetation cover in the subtropics. In addition, the atmospheric circulation is too weak. The model also tends to underestimate the ... Article in Journal/Newspaper Antarc* Antarctic Greenland Ice Sheet Iceberg* Sea ice University of Liège: ORBi (Open Repository and Bibliography) Geoscientific Model Development 3 2 603 633
institution Open Polar
collection University of Liège: ORBi (Open Repository and Bibliography)
op_collection_id ftorbi
language English
topic Earth System Model
Intermediate Complexity
Physical
chemical
mathematical & earth Sciences
Earth sciences & physical geography
Physique
chimie
mathématiques & sciences de la terre
Sciences de la terre & géographie physique
spellingShingle Earth System Model
Intermediate Complexity
Physical
chemical
mathematical & earth Sciences
Earth sciences & physical geography
Physique
chimie
mathématiques & sciences de la terre
Sciences de la terre & géographie physique
Goosse, H.
Brovkin, V.
Fichefet, T.
Haarsma, R.
Huybrechts, P.
Jongma, J.
Mouchet, Anne
Selten, F.
Barriat, P.-Y.
Campin, J.-M.
Deleersnijder, E.
Driesschaert, E.
Goelzer, H.
Janssens, I.
Loutre, M.-F.
Morales Maqueda, M. A.
Opsteegh, T.
Mathieu, P.-P.
Munhoven, Guy
Pettersson, E. J.
Renssen, H.
Roche, D. M.
Schaeffer, M.
Tartinville, B.
Timmermann, A.
Weber, S.
Description of the Earth system model of intermediate complexity LOVECLIM version 1.2
topic_facet Earth System Model
Intermediate Complexity
Physical
chemical
mathematical & earth Sciences
Earth sciences & physical geography
Physique
chimie
mathématiques & sciences de la terre
Sciences de la terre & géographie physique
description peer reviewed The main characteristics of the new version 1.2 of the three-dimensional Earth system model of intermediate complexity LOVECLIM are briefly described. LOVECLIM 1.2 includes representations of the atmosphere, the ocean and sea ice, the land surface (including vegetation), the ice sheets, the icebergs and the carbon cycle. The atmospheric component is ECBilt2, a T21, 3-level quasi-geostrophic model. The ocean component is CLIO3, which consists of an ocean general circulation model coupled to a comprehensive thermodynamic-dynamic sea-ice model. Its horizontal resolution is of 3° by 3°, and there are 20 levels in the ocean. ECBilt-CLIO is coupled to VECODE, a vegetation model that simulates the dynamics of two main terrestrial plant functional types, trees and grasses, as well as desert. VECODE also simulates the evolution of the carbon cycle over land while the ocean carbon cycle is represented by LOCH, a comprehensive model that takes into account both the solubility and biological pumps. The ice sheet component AGISM is made up of a three-dimensional thermomechanical model of the ice sheet flow, a visco-elastic bedrock model and a model of the mass balance at the ice-atmosphere and ice-ocean interfaces. For both the Greenland and Antarctic ice sheets, calculations are made on a 10 km by 10 km resolution grid with 31 sigma levels. LOVECLIM1.2 reproduces well the major characteristics of the observed climate both for present-day conditions and for key past periods such as the last millennium, the mid-Holocene and the Last Glacial Maximum. However, despite some improvements compared to earlier versions, some biases are still present in the model. The most serious ones are mainly located at low latitudes with an overestimation of the temperature there, a too symmetric distribution of precipitation between the two hemispheres, and an overestimation of precipitation and vegetation cover in the subtropics. In addition, the atmospheric circulation is too weak. The model also tends to underestimate the ...
format Article in Journal/Newspaper
author Goosse, H.
Brovkin, V.
Fichefet, T.
Haarsma, R.
Huybrechts, P.
Jongma, J.
Mouchet, Anne
Selten, F.
Barriat, P.-Y.
Campin, J.-M.
Deleersnijder, E.
Driesschaert, E.
Goelzer, H.
Janssens, I.
Loutre, M.-F.
Morales Maqueda, M. A.
Opsteegh, T.
Mathieu, P.-P.
Munhoven, Guy
Pettersson, E. J.
Renssen, H.
Roche, D. M.
Schaeffer, M.
Tartinville, B.
Timmermann, A.
Weber, S.
author_facet Goosse, H.
Brovkin, V.
Fichefet, T.
Haarsma, R.
Huybrechts, P.
Jongma, J.
Mouchet, Anne
Selten, F.
Barriat, P.-Y.
Campin, J.-M.
Deleersnijder, E.
Driesschaert, E.
Goelzer, H.
Janssens, I.
Loutre, M.-F.
Morales Maqueda, M. A.
Opsteegh, T.
Mathieu, P.-P.
Munhoven, Guy
Pettersson, E. J.
Renssen, H.
Roche, D. M.
Schaeffer, M.
Tartinville, B.
Timmermann, A.
Weber, S.
author_sort Goosse, H.
title Description of the Earth system model of intermediate complexity LOVECLIM version 1.2
title_short Description of the Earth system model of intermediate complexity LOVECLIM version 1.2
title_full Description of the Earth system model of intermediate complexity LOVECLIM version 1.2
title_fullStr Description of the Earth system model of intermediate complexity LOVECLIM version 1.2
title_full_unstemmed Description of the Earth system model of intermediate complexity LOVECLIM version 1.2
title_sort description of the earth system model of intermediate complexity loveclim version 1.2
publisher Copernicus Publications
publishDate 2010
url https://orbi.uliege.be/handle/2268/75292
https://doi.org/10.5194/gmd-3-603-2010
genre Antarc*
Antarctic
Greenland
Ice Sheet
Iceberg*
Sea ice
genre_facet Antarc*
Antarctic
Greenland
Ice Sheet
Iceberg*
Sea ice
op_source Geoscientific Model Development, 3 (2), 603-633 (2010)
op_relation http://www.geosci-model-dev.net/3/603/2010/
urn:issn:1991-959X
urn:issn:1991-9603
https://orbi.uliege.be/handle/2268/75292
info:hdl:2268/75292
doi:10.5194/gmd-3-603-2010
scopus-id:2-s2.0-84891561209
op_rights restricted access
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info:eu-repo/semantics/restrictedAccess
op_doi https://doi.org/10.5194/gmd-3-603-2010
container_title Geoscientific Model Development
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