4.0 Article

Teleconnections of the tropical Atlantic to the tropical Indian and Pacific Oceans: A review of recent findings

Journal

METEOROLOGISCHE ZEITSCHRIFT
Volume 18, Issue 4, Pages 445-454

Publisher

E SCHWEIZERBARTSCHE VERLAGSBUCHHANDLUNG
DOI: 10.1127/0941-2948/2009/0394

Keywords

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Funding

  1. European Commission [GOCE-CT-2003-505539]
  2. NSF-ATM [0739323]
  3. National Oceanic and Atmospheric Administration (NOAA) Climate Program Office
  4. National Natural Science Foundation of China [40876004, 40730843]
  5. Chinese Ministry of Education [B07036]
  6. National Basic Research Program [2007CB816005]
  7. International Corporation Program of China [2008DFA22230]

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Recent studies found that tropical Atlantic variability may affect the climate in both the tropical Pacific and Indian Ocean basins, possibly modulating the Indian summer monsoon and Pacific ENSO events. A warm tropical Atlantic Ocean forces a Gill-Matsuno-type quadrupole response with a low-level anticyclone located over India that weakens the Indian monsoon circulation, and vice versa for a cold tropical Atlantic Ocean. The tropical Atlantic Ocean can also induce changes in the Indian Ocean sea surface temperatures (SSTs), especially along the coast of Africa and in the western side of the Indian basin. Additionally, it can influence the tropical Pacific Ocean via an atmospheric telcconnection that is associated with the Atlantic Walker circulation. Although the Pacific El Nino does not contemporaneously correlate with the Atlantic Nino, anomalous warming or cooling of the two equatorial oceans can form an inter-basin SST gradient that induces surface zonal wind anomalies over equatorial South America and other regions in both ocean basins. The zonal wind anomalies act as a bridge linking the two ocean basins, and in turn reinforce the inter-basin SST gradient through the atmospheric Walker circulation and oceanic processes. Thus, a positive feedback seems to exist for climate variability of the tropical Pacific-Atlantic Oceans and atmospheric system, in which the inter-basin SST gradient is coupled to the overlying atmospheric wind.

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