Heat fluxes across the Antarctic Circumpolar Current in Drake Passage: Mean flow and eddy contributions

Author:

Ferrari Ramiro1,Provost Christine1,Park Young-Hyang1,Sennéchael Nathalie1,Koenig Zoé1,Sekma Hela12,Garric Gilles3,Bourdallé-Badie Romain3

Affiliation:

1. LOCEAN, UMR 7159, CNRS/UPMC/MNHN/IRD, Université Pierre et Marie Curie; Paris cedex France

2. Now at LEGOS; Toulouse France

3. MERCATOR-OCEAN, Parc Technologique du Canal; Ramonville St. Agne France

Funder

CNES (Centre National d'Etudes Spatiales)

CNRS-INSU (Institut des Sciences de l'Univers)

INEE (Institut National de l'Environnement et de l'Ecologie)

Publisher

American Geophysical Union (AGU)

Subject

Earth and Planetary Sciences (miscellaneous),Space and Planetary Science,Geochemistry and Petrology,Geophysics,Oceanography

Reference34 articles.

1. Modeling diurnal and intraseasonal variability of the ocean mixed layer;Bernie;J. Clim.,2005

2. Horizontal advection of temperature for low-frequency motions;Bryden;Deep Sea Res. Oceangr. Abstr.,1976

3. Poleward heat flux and conversion of available potential energy in Drake Passage;Bryden;J. Mar. Res.,1979

4. Energetic eddies at the northern edge of the Antarctic Circumpolar Current in the Southwest Pacific;Bryden;Prog. Oceanogr.,1985

5. Eddy-mean flow interaction in the Gulf Stream at 68°W: Part I: Eddy energetics;Cronin;J. Phys. Oceanogr.,1996

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