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      The connection of the Indonesian Throughflow, South Indian Ocean Countercurrent and the Leeuwin Current

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      Ocean Science
      Copernicus GmbH

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          Abstract

          <p><strong>Abstract.</strong> East of Madagascar, the shallow “South Indian Ocean Counter Current (SICC)” flows from west to east across the Indian Ocean against the direction of the wind-driven circulation. The SICC impinges on west Australia and enhances the sea level slope, strengthening the alongshore coastal jet: the Leeuwin Current (LC), which flows poleward along Australia. An observed transport maximum of the LC around 22°<span class="thinspace"></span>S can likely be attributed to this impingement of the SICC. The LC is often described as a regional coastal current that is forced by an offshore meridional density gradient or sea surface slope. However, little is known about the controls of these open-ocean gradients. The regional circulation system is embedded in the subtropical “super gyre” that connects the Indo-Pacific via the Tasman Gateway and the Indonesian passages. The Indonesian Throughflow (ITF) circulates through the Indian Ocean back into the Pacific south of Australia. This return pathway appears to be partly trapped in the upper layer north of an outcrop line. It is redirected along this outcrop line and joins the eastward flow of the SICC. To study the connection of the basin-scale and the inter-ocean-scale dynamics, we apply both an ocean general circulation model and a conceptual two-layer model. Shutdown of the ITF in the models leads to a large decrease in Leeuwin Current transport. Most of the SICC was found to then reconnect to the internal gyre circulation in the Indian Ocean. ITF, SICC and LC thus appear to be dynamically connected.</p>

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          A New Sea Surface Temperature and Sea Ice Boundary Dataset for the Community Atmosphere Model

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            Surface Thermal Boundary Condition for Ocean Circulation Models

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                Author and article information

                Journal
                Ocean Science
                Ocean Sci.
                Copernicus GmbH
                1812-0792
                2016
                June 02 2016
                : 12
                : 3
                : 771-780
                Article
                10.5194/os-12-771-2016
                ce1abba2-3f3a-4677-94a7-0fe5eab15481
                © 2016

                https://creativecommons.org/licenses/by/3.0/

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