Variability of the southwest Indian Ocean

Author:

de Ruijter Wilhelmus P. M.1,Ridderinkhof Herman2,Schouten Mathijs W.13

Affiliation:

1. Institute of Marine and Atmospheric Research, Utrecht University, PO Box 80.005, 3508 TA Utrecht, The Netherlands, ()

2. Royal Netherlands Institute of Sea Research, PO Box 59, 1790 AB, Den Burg, Texel, The Netherlands

3. College of Oceanic and Atmospheric Sciences, Oregon State University, 104 Ocean Admin Building, Corvallis, OR 97331–5503, USA

Abstract

The variability in the southwest Indian Ocean is connected to the basin–scale and global–scale ocean circulation. Two bands of enhanced variability stretch across the Southern Indian Ocean east of Madagascar around 12○ S and 25○ S, respectively. They mark the preferred routes along which anomalies, generated by varying forcing over the central basin, near the eastern boundary or in the equatorial region, propagate westward as baroclinic Rossby waves. Sea–surface height anomalies pass along the northern tip of Madagascar and are observed by satellite altimetry to propagate into the central Mozambique Channel. There, eddies are subsequently formed that propagate southward into the Agulhas retroflection region. The anomalies along the southern band trigger the formation of large dipolar vortex pairs in the separation region of the East Madagascar Current at the southern tip of the island. South of Africa these eddies and dipoles trigger the shedding of Agulhas Rings that feed the Atlantic meridional overturning circulation with warm, salty, Indian Ocean water. Interannual variability of the forcing over the Indian Ocean, such as that associated with the Indian Ocean Dipole/El Niño climate modes, propagates along these pathways and leads to associated modulations of the eddy transports into the South Atlantic.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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