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Evolution of the Atlantic Multidecadal Variability in a Model with an Improved North Atlantic Current
Author(s) -
Annika Drews,
Richard J. Greatbatch
Publication year - 2017
Publication title -
journal of climate
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.315
H-Index - 287
eISSN - 1520-0442
pISSN - 0894-8755
DOI - 10.1175/jcli-d-16-0790.1
Subject(s) - ocean gyre , climatology , gulf stream , forcing (mathematics) , atlantic multidecadal oscillation , atmosphere (unit) , environmental science , ocean current , convection , oceanography , climate model , climate change , sea surface temperature , current (fluid) , thermohaline circulation , geology , geography , meteorology , subtropics , fishery , biology
This article investigates the dynamics and temporal evolution of the Atlantic multidecadal variability (AMV) in a coupled climate model. The model contains a correction to the North Atlantic flow field to improve the path of the North Atlantic Current, thereby alleviating the surface cold bias, a common problem with climate models, and offering a unique opportunity to study the AMV in a model. Changes in greenhouse gas forcing or aerosol loading are not considered. A striking feature of the results is the contrast between the western and eastern sides of the subpolar gyre in the model. On the western side, anomalous heat supply by the ocean plays a major role, with most of this heat being given up to the atmosphere in the warm phase, largely symmetrically about the time of the AMV maximum. By contrast, on the eastern side, the ocean anomalously gains heat from the atmosphere, with relatively little role for ocean heat supply in the years before the AMV maximum. Thereafter, the balance changes with...

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