Publication:
Vertical Heat Transport by Ocean Circulation and the Role of Mechanical and Haline Forcing

dc.contributor.author Zika, J en_US
dc.contributor.author Sijp, Willem en_US
dc.contributor.author England, Matthew en_US
dc.date.accessioned 2021-11-25T12:30:24Z
dc.date.available 2021-11-25T12:30:24Z
dc.date.issued 2013 en_US
dc.description.abstract Vertical transport of heat by ocean circulation is investigated using a coupled climate model and novel thermodynamic methods. Using a streamfunction in temperature-depth coordinates, cells are identified by whether they are thermally direct (flux heat upward) or indirect (flux heat downward). These cells are then projected into geographical and other thermodynamic coordinates. Three cells are identified in the model: a thermally direct cell coincident with Antarctic Bottom Water, a thermally indirect deep cell coincident with the upper limb of the meridional overturning circulation, and a thermally direct shallow cell coincident with the subtropical gyres at the surface. The mechanisms maintaining the thermally indirect deep cell are investigated. Sinking water within the deep cell is more saline than that which upwells, because of the coupling between the upper limb and the subtropical gyres in a broader thermohaline circulation. Despite the higher salinity of its sinking water, the deep cell transports buoyancy downward, requiring a source of mechanical energy. Experiments run to steady state with increasing Southern Hemisphere westerlies show an increasing thermally indirect circulation. These results suggest that heat can be pumped downward by the upper limb of the meridional overturning circulation through a combination of salinity gain in the subtropics and the mechanical forcing provided by Southern Hemisphere westerly winds. en_US
dc.identifier.issn 0022-3670 en_US
dc.identifier.uri http://hdl.handle.net/1959.4/53769
dc.language English
dc.language.iso EN en_US
dc.rights CC BY-NC-ND 3.0 en_US
dc.rights.uri https://creativecommons.org/licenses/by-nc-nd/3.0/au/ en_US
dc.source Legacy MARC en_US
dc.title Vertical Heat Transport by Ocean Circulation and the Role of Mechanical and Haline Forcing en_US
dc.type Journal Article en
dcterms.accessRights open access
dspace.entity.type Publication en_US
unsw.accessRights.uri https://purl.org/coar/access_right/c_abf2
unsw.description.publisherStatement © Copyright (2013) American Meteorological Society (AMS). Permission to use figures, tables, and brief excerpts from this work in scientific and educational works is hereby granted provided that the source is acknowledged. Any use of material in this work that is determined to be “fair use” under Section 107 of the U.S. Copyright Act September 2010 Page 2 or that satisfies the conditions specified in Section 108 of the U.S. Copyright Act (17 USC §108, as revised by P.L. 94-553) does not require the AMS’s permission. Republication, systematic reproduction, posting in electronic form, such as on a web site or in a searchable database, or other uses of this material, except as exempted by the above statement, requires written permission or a license from the AMS. Additional details are provided in the AMS Copyright Policy, available on the AMS Web site located at (http://www.ametsoc.org/) or from the AMS at 617-227-2425 or copyrights@ametsoc.org. en_US
unsw.identifier.doiPublisher http://dx.doi.org/10.1175/JPO-D-12-0179.1 en_US
unsw.relation.FunderRefNo CE110001028 en_US
unsw.relation.faculty Science
unsw.relation.fundingScheme AR, NERC en_US
unsw.relation.ispartofissue 10 en_US
unsw.relation.ispartofjournal Journal of Physical Oceanography en_US
unsw.relation.ispartofpagefrompageto 2095-2112 en_US
unsw.relation.ispartofvolume 43 en_US
unsw.relation.originalPublicationAffiliation Zika, J, Climate Change Research Centre (CCRC), Faculty of Science, UNSW en_US
unsw.relation.originalPublicationAffiliation Sijp, Willem, Climate Change Research Centre (CCRC), Faculty of Science, UNSW en_US
unsw.relation.originalPublicationAffiliation England, Matthew, Climate Change Research Centre (CCRC), Faculty of Science, UNSW en_US
unsw.relation.school School of Biological, Earth & Environmental Sciences *
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