The Impact of Southern Ocean Topographic Barriers on the Ocean Circulation and the Overlying AtmosphereSource: Journal of Climate:;2022:;volume( 035 ):;issue: 018::page 5805Author:Agatha M. de Boer
,
David K. Hutchinson
,
Fabien Roquet
,
Louise C. Sime
,
Natalie J. Burls
,
Céline Heuzé
DOI: 10.1175/JCLI-D-21-0896.1Publisher: American Meteorological Society
Abstract: Southern Ocean bathymetry constrains the path of the Antarctic Circumpolar Current (ACC), but the bathymetric influence on the coupled ocean–atmosphere system is poorly understood. Here, we investigate this impact by respectively flattening large topographic barriers around the Kerguelen Plateau, Campbell Plateau, Mid-Atlantic Ridge, and Drake Passage in four simulations in a coupled climate model. The barriers impact both the wind and buoyancy forcing of the ACC transport, which increases by between 4% and 14% when barriers are removed individually and by 56% when all barriers are removed simultaneously. The removal of Kerguelen Plateau bathymetry increases convection south of the plateau and the removal of Drake Passage bathymetry reduces convection upstream in the Ross Sea. When the barriers are removed, zonal flattening of the currents leads to sea surface temperature (SST) anomalies that strongly correlate to precipitation anomalies, with correlation coefficients ranging between
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| contributor author | Agatha M. de Boer | |
| contributor author | David K. Hutchinson | |
| contributor author | Fabien Roquet | |
| contributor author | Louise C. Sime | |
| contributor author | Natalie J. Burls | |
| contributor author | Céline Heuzé | |
| date accessioned | 2023-04-12T18:45:33Z | |
| date available | 2023-04-12T18:45:33Z | |
| date copyright | 2022/09/15 | |
| date issued | 2022 | |
| identifier other | JCLI-D-21-0896.1.pdf | |
| identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4290199 | |
| description abstract | Southern Ocean bathymetry constrains the path of the Antarctic Circumpolar Current (ACC), but the bathymetric influence on the coupled ocean–atmosphere system is poorly understood. Here, we investigate this impact by respectively flattening large topographic barriers around the Kerguelen Plateau, Campbell Plateau, Mid-Atlantic Ridge, and Drake Passage in four simulations in a coupled climate model. The barriers impact both the wind and buoyancy forcing of the ACC transport, which increases by between 4% and 14% when barriers are removed individually and by 56% when all barriers are removed simultaneously. The removal of Kerguelen Plateau bathymetry increases convection south of the plateau and the removal of Drake Passage bathymetry reduces convection upstream in the Ross Sea. When the barriers are removed, zonal flattening of the currents leads to sea surface temperature (SST) anomalies that strongly correlate to precipitation anomalies, with correlation coefficients ranging between | |
| publisher | American Meteorological Society | |
| title | The Impact of Southern Ocean Topographic Barriers on the Ocean Circulation and the Overlying Atmosphere | |
| type | Journal Paper | |
| journal volume | 35 | |
| journal issue | 18 | |
| journal title | Journal of Climate | |
| identifier doi | 10.1175/JCLI-D-21-0896.1 | |
| journal fristpage | 5805 | |
| journal lastpage | 5821 | |
| page | 5805–5821 | |
| tree | Journal of Climate:;2022:;volume( 035 ):;issue: 018 | |
| contenttype | Fulltext |