Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics

Horizontal stirring by time-varying mesoscale flows contributes to forming submesoscale tracer filaments. In this paper, we propose a parameterization of the passive transport associated with filamentation by mesoscale flows for use in O(10 km) resolution ocean models. Theoretical motivations are pr...

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Published in:Ocean Modelling
Main Authors: Le Sommer, J., d’Ovidio, F., Madec, G.
Format: Article in Journal/Newspaper
Language:unknown
Published: 2011
Subjects:
Online Access:https://eprints.soton.ac.uk/189515/
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spelling ftsouthampton:oai:eprints.soton.ac.uk:189515 2023-07-30T04:07:02+02:00 Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics Le Sommer, J. d’Ovidio, F. Madec, G. 2011 https://eprints.soton.ac.uk/189515/ unknown Le Sommer, J., d’Ovidio, F. and Madec, G. (2011) Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics. Ocean Modelling, 39 (1-2), 154-169. (doi:10.1016/j.ocemod.2011.03.007 <http://dx.doi.org/10.1016/j.ocemod.2011.03.007>). Article PeerReviewed 2011 ftsouthampton https://doi.org/10.1016/j.ocemod.2011.03.007 2023-07-09T21:22:22Z Horizontal stirring by time-varying mesoscale flows contributes to forming submesoscale tracer filaments. In this paper, we propose a parameterization of the passive transport associated with filamentation by mesoscale flows for use in O(10 km) resolution ocean models. Theoretical motivations are provided for modelling subgrid stirring by the resolved mesoscale flows with an anisotropic generalization of Smagorinsky operator. For level coordinate models, an isoneutral formulation of the proposed subgrid operator is provided. The proposed subgrid operator is diagnosed with DRAKKAR global 1/4° eddy-resolving model output. In the Southern Ocean, the parameterization is shown to provide diffusivities peaking at about 400 m2 s?1. If applied prognostically, the proposed subgrid operator could drive meridional heat transports of about .5PW at 45°S. This suggests that a significant fraction of the transport by mesoscale flows could be associated with tracer features of scale smaller than our model grid size (not, vert, similar20 km at 45°S). A large contribution to this transport is associated with differential advection by the time-mean flow at subgrid scale. Article in Journal/Newspaper Southern Ocean University of Southampton: e-Prints Soton Southern Ocean Ocean Modelling 39 1-2 154 169
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language unknown
description Horizontal stirring by time-varying mesoscale flows contributes to forming submesoscale tracer filaments. In this paper, we propose a parameterization of the passive transport associated with filamentation by mesoscale flows for use in O(10 km) resolution ocean models. Theoretical motivations are provided for modelling subgrid stirring by the resolved mesoscale flows with an anisotropic generalization of Smagorinsky operator. For level coordinate models, an isoneutral formulation of the proposed subgrid operator is provided. The proposed subgrid operator is diagnosed with DRAKKAR global 1/4° eddy-resolving model output. In the Southern Ocean, the parameterization is shown to provide diffusivities peaking at about 400 m2 s?1. If applied prognostically, the proposed subgrid operator could drive meridional heat transports of about .5PW at 45°S. This suggests that a significant fraction of the transport by mesoscale flows could be associated with tracer features of scale smaller than our model grid size (not, vert, similar20 km at 45°S). A large contribution to this transport is associated with differential advection by the time-mean flow at subgrid scale.
format Article in Journal/Newspaper
author Le Sommer, J.
d’Ovidio, F.
Madec, G.
spellingShingle Le Sommer, J.
d’Ovidio, F.
Madec, G.
Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics
author_facet Le Sommer, J.
d’Ovidio, F.
Madec, G.
author_sort Le Sommer, J.
title Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics
title_short Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics
title_full Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics
title_fullStr Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics
title_full_unstemmed Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics
title_sort parameterization of subgrid stirring in eddy resolving ocean models. part 1: theory and diagnostics
publishDate 2011
url https://eprints.soton.ac.uk/189515/
geographic Southern Ocean
geographic_facet Southern Ocean
genre Southern Ocean
genre_facet Southern Ocean
op_relation Le Sommer, J., d’Ovidio, F. and Madec, G. (2011) Parameterization of subgrid stirring in eddy resolving ocean models. Part 1: Theory and diagnostics. Ocean Modelling, 39 (1-2), 154-169. (doi:10.1016/j.ocemod.2011.03.007 <http://dx.doi.org/10.1016/j.ocemod.2011.03.007>).
op_doi https://doi.org/10.1016/j.ocemod.2011.03.007
container_title Ocean Modelling
container_volume 39
container_issue 1-2
container_start_page 154
op_container_end_page 169
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