A multi-model analysis of the role of the ocean on the African and Indian monsoon during mid-Holocene

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Zhao, Y., Braconnot, P., Marti, O., Harrison, S. P. orcid id iconORCID: https://orcid.org/0000-0001-5687-1903, Hewitt, C., Kitoh, A., Liu, Z., Mikolajewicz, U., Otto-Bliesner, B. and Weber, S. L. (2005) A multi-model analysis of the role of the ocean on the African and Indian monsoon during mid-Holocene. Climate Dynamics, 25 (7-8). pp. 777-800. ISSN 0930-7575 doi: 10.1007/s00382-005-0075-7

Abstract/Summary

We investigate the role of the ocean feedback on the climate in response to insolation forcing during the mid-Holocene (6,000 year BP) using results from seven coupled ocean–atmosphere general circulation models. We examine how the dipole in late summer sea-surface temperature (SST) anomalies in the tropical Atlantic increases the length of the African monsoon, how this dipole structure is created and maintained, and how the late summer SST warming in the northwest Indian Ocean affects the monsoon retreat in this sector. Similar mechanisms are found in all of the models, including a strong wind evaporation feedback and changes in the mixed layer depth that enhance the insolation forcing, as well as increased Ekman transport in the Atlantic that sharpens the Atlantic dipole pattern. We also consider changes in interannual variability over West Africa and the Indian Ocean. The teleconnection between variations in SST and Sahelian precipitation favor a larger impact of the Atlantic dipole mode in this region. In the Indian Ocean, the strengthening of the Indian dipole structure in autumn has a damping effect on the Indian dipole mode at the interannual time scale

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Item Type Article
URI https://reading-clone.eprints-hosting.org/id/eprint/35930
Identification Number/DOI 10.1007/s00382-005-0075-7
Refereed Yes
Divisions Interdisciplinary Research Centres (IDRCs) > Walker Institute
Science > School of Archaeology, Geography and Environmental Science > Earth Systems Science
Science > School of Archaeology, Geography and Environmental Science > Department of Geography and Environmental Science
Interdisciplinary centres and themes > Centre for Past Climate Change
Publisher Springer
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