Journal Information

Online ISSN: 1520-0485
Print ISSN: 0022-3670
Publishing Frequency: Monthly

Volume 38, Issue 2 (February 2008)

Lagrangian Study of Tropical Instability Vortices in the Atlantic

Pierre Dutrieux

Department of Oceanography, University of Hawaii at Manoa, Honolulu, Hawaii

Christophe E. Menkes and Jerome Vialard

LOCEAN, Université Pierre et Marie Curie, Paris, France

Pierre Flament

Department of Oceanography, University of Hawaii at Manoa, Honolulu, Hawaii

Bruno Blanke

LPO, Université de Bretagne Occidentale, Brest, France





Abstract

Tropical instability waves and tropical instability vortices (TIVs) exert major controls on ocean dynamics, thermodynamics, and biology on intraseasonal to seasonal time scales. To understand the fundamental mechanisms at play, a Lagrangian analysis of the 3D circulation of westward-propagating TIVs was performed in a high-resolution Atlantic Ocean simulation. The model reproduces the main temperature and velocity features of the tropical Atlantic mean state and the TIVs. Lagrangian diagnostics were used to track the water masses transported in vortices and exchanged with surrounding waters. The 3D circulation within vortices is consistent with previous observations and dominated by anticyclonic rotation with downwelling and upwelling near the leading and trailing edges of the vortex, respectively. This convergent flow creates sharp gradients at the TIV southwestern edge, where vertical mixing is most efficient. While TIVs remain highly dynamically coherent throughout their lifetime, significant exchanges occur with their surroundings, with 50% of their water being renewed over one rotation cycle. A detailed investigation of the eddies’ sources and sinks reveals that they mostly transport southern water zonally, while northern waters are mostly passing through or fluxed southward in their lee. A notable source of entrained water is the Equatorial Undercurrent.

Keywords: Tropics, Atlantic Ocean, Waves, oceanic, Instability, Ocean models

Received: January 12, 2007; Accepted: June 5, 2007

Corresponding author address: Pierre Dutrieux, Department of Oceanography, 1000 Pope Road, Honolulu, HI 96822. Email:

Cited by

Clement Ubelmann, Lee-Lueng Fu. (2011) Vorticity Structures in the Tropical Pacific from a Numerical Simulation. Journal of Physical Oceanography 41:8, 1455-1464
Online publication date: 1-Aug-2011.
Abstract . Full Text . PDF (2558 KB) 
Renellys C. Perez, Meghan F. Cronin, William S. Kessler. (2010) Tropical Cells and a Secondary Circulation near the Northern Front of the Equatorial Pacific Cold Tongue. Journal of Physical Oceanography 40:9, 2091-2106
Online publication date: 1-Sep-2010.
Abstract . Full Text . PDF (2490 KB) 
Lia O. Slemons, James W. Murray, Joseph Resing, Barbara Paul, Pierre Dutrieux. (2010) Western Pacific coastal sources of iron, manganese, and aluminum to the Equatorial Undercurrent. Global Biogeochemical Cycles 24:3,
Online publication date: 1-Jan-2010.
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R. Justin Small, Kelvin J. Richards, Shang‐Ping Xie, Pierre Dutrieux, Toru Miyama. (2009) Damping of Tropical Instability Waves caused by the action of surface currents on stress. Journal of Geophysical Research 114:C4,
Online publication date: 1-Jan-2009.
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Ren-Chieh Lien, Eric A. D'Asaro, Christophe E. Menkes. (2008) Modulation of equatorial turbulence by tropical instability waves. Geophysical Research Letters 35:24,
Online publication date: 1-Jan-2008.
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