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Remote Sea Surface Temperature Variations during ENSO: Evidence for a Tropical Atmospheric Bridge

Journal of Climate · 1999 · Vol. 12(4) · pp. 917–932
Stephen A. KleinBrian J. SodenNgar-Cheung Lau

Abstract

In an El Nin o event, positive SST anomalies usually appear in remote ocean basins such as the South China Sea, the Indian Ocean, and the tropical North Atlantic approximately 3 to 6 months after SST anomalies peak in the tropical Pacific. Ship data from 1952 to 1992 and satellite data from the 1980s both demonstrate that changes in atmospheric circulation accompanying El Nin o induce changes in cloud cover and evaporation which, in turn, increase the net heat flux entering these remote oceans. It is postulated that this increased heat flux is responsible for the surface warming of these oceans. Specifically, over the eastern Indian Ocean and South China Sea, enhanced subsidence during El Nin o reduces cloud cover and increases the solar radiation absorbed by the ocean, thereby leading to enhanced SSTs. In the tropical North Atlantic, a weakening of the trade winds during El Nin o reduces surface evaporation and increases SSTs. These relationships fit the concept of an ''atmospheric bridge'' that connects SST anomalies in the central equatorial Pacific to those in remote tropical oceans.

Climate variability and modelsOceanographic and Atmospheric ProcessesTropical and Extratropical Cyclones ResearchSea surface temperatureClimatologyEnvironmental scienceCloud coverPrecipitationTropical cycloneSubsidenceTropical AtlanticEl Niño Southern OscillationOceanography

Funding

  • Princeton University
Citations
1,513
FWCI
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References
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Quarterly Journal of the Royal Meteorological Society · 1992 · 1,899 citations
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Journal of Physical Oceanography · 1977 · 417 citations
A Comprehensive Ocean-Atmosphere Data Set
Bulletin of the American Meteorological Society · 1987 · 1,078 citations
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