On the representation of high latitude processes in the ORCA-LIM global coupled sea ice–ocean model
On the representation of high latitude processes in the ORCA-LIM global coupled sea ice–ocean model
The dynamic–thermodynamic Louvain-la-Neuve sea ice model (LIM) has been coupled to the OPA primitive equation ocean general circulation model. In the ORCA2-LIM configuration, the model is run on a global domain with 2° mean resolution. Model runs are forced with a combined dataset consisting of daily NCEP/NCAR reanalysis data and various climatologies. The model's performance is evaluated with respect to the representation of sea ice and the high latitude oceans. The annual cycle of sea ice growth and decay is realistically captured in both hemispheres, with ice extent, thickness and drift in close agreement with observations. The location of the main sites of deep convection (Labrador and Greenland Seas; continental shelves of marginal seas of the Southern Ocean) is well reproduced. Model deficiencies include a slight overestimation of summer ice extent in the Arctic, and a significant underestimation of multi-year ice in the Weddell Sea. Furthermore, the width of the Arctic Ocean Boundary Current and the Antarctic Circumpolar Current is overestimated. Sensitivity studies indicate that the use of the combined forcing dataset is crucial to achieve a reasonable summer sea ice coverage and that the direct use of the NCEP/NCAR wind stress data leads to an overestimation of sea ice drift velocities. A restoring of sea surface salinity is necessary to avoid spurious open ocean convection in the Weddell Sea.
175-201
Timmermann, Ralph
9d35bd40-5096-4823-bdd5-9c3f3f63704d
Goosse, Hugues
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Madec, Gurvan
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Fichefet, Thierry
7b3028c8-1af9-4671-b041-51022a13bf73
Ethe, Christian
aedbeeba-73fb-44a6-ac8f-b48fa7a37bdd
Dulière, Valérie
7f6dc276-2138-46e3-aff9-9eba517b634e
2005
Timmermann, Ralph
9d35bd40-5096-4823-bdd5-9c3f3f63704d
Goosse, Hugues
33c33c55-356b-48ec-be78-3e9eb5d04f29
Madec, Gurvan
ffb28deb-4bbd-4a4c-914f-492f813e4864
Fichefet, Thierry
7b3028c8-1af9-4671-b041-51022a13bf73
Ethe, Christian
aedbeeba-73fb-44a6-ac8f-b48fa7a37bdd
Dulière, Valérie
7f6dc276-2138-46e3-aff9-9eba517b634e
Timmermann, Ralph, Goosse, Hugues, Madec, Gurvan, Fichefet, Thierry, Ethe, Christian and Dulière, Valérie
(2005)
On the representation of high latitude processes in the ORCA-LIM global coupled sea ice–ocean model.
Ocean Modelling, 8 (1-2), .
(doi:10.1016/j.ocemod.2003.12.009).
Abstract
The dynamic–thermodynamic Louvain-la-Neuve sea ice model (LIM) has been coupled to the OPA primitive equation ocean general circulation model. In the ORCA2-LIM configuration, the model is run on a global domain with 2° mean resolution. Model runs are forced with a combined dataset consisting of daily NCEP/NCAR reanalysis data and various climatologies. The model's performance is evaluated with respect to the representation of sea ice and the high latitude oceans. The annual cycle of sea ice growth and decay is realistically captured in both hemispheres, with ice extent, thickness and drift in close agreement with observations. The location of the main sites of deep convection (Labrador and Greenland Seas; continental shelves of marginal seas of the Southern Ocean) is well reproduced. Model deficiencies include a slight overestimation of summer ice extent in the Arctic, and a significant underestimation of multi-year ice in the Weddell Sea. Furthermore, the width of the Arctic Ocean Boundary Current and the Antarctic Circumpolar Current is overestimated. Sensitivity studies indicate that the use of the combined forcing dataset is crucial to achieve a reasonable summer sea ice coverage and that the direct use of the NCEP/NCAR wind stress data leads to an overestimation of sea ice drift velocities. A restoring of sea surface salinity is necessary to avoid spurious open ocean convection in the Weddell Sea.
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Published date: 2005
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Local EPrints ID: 64369
URI: http://eprints.soton.ac.uk/id/eprint/64369
ISSN: 1463-5003
PURE UUID: 66f48604-ce47-4045-bcc0-f3f3d5232b47
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Date deposited: 10 Dec 2008
Last modified: 15 Mar 2024 11:48
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Author:
Ralph Timmermann
Author:
Hugues Goosse
Author:
Gurvan Madec
Author:
Thierry Fichefet
Author:
Christian Ethe
Author:
Valérie Dulière
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