Causes of large-scale sea level variations in the Southern Ocean: Analyses of sea level and a barotropic model

被引:44
|
作者
Vivier, F
Kelly, KA
Harismendy, M
机构
[1] Univ Paris 06, Lab Oceanog Dynam & Climatol, Inst Pierre Simon de Laplace, F-75252 Paris, France
[2] Univ Washington, Appl Phys Lab, Seattle, WA 98195 USA
关键词
D O I
10.1029/2004JC002773
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
We analyze a decade of sea surface height (SSH) measurements in the Southern Ocean from the TOPEX/Poseidon and ERS altimeters, with a focus on the variability at timescales <2 years. Among the different processes contributing to large-scale SSH variations, the barotropic response to the winds dominates poleward of 50 degrees S, while thermosteric processes dominate equatorward, except for resonant basins for the barotropic modes and regions of intense eddy activity. A finite element barotropic model has been developed to analyze the vorticity budget. The SSH from the model agrees well with observations. The leading barotropic mode, which is annular and is confined near Antarctica, is responsible for most of the barotropic circumpolar transport. It is coherent with the zonally integrated eastward wind stress consistent with a free mode response. Although previously evidenced in bottom pressure data, this mode is only partially seen in altimeter data because of ice coverage. It nevertheless distinctly appears above the Pacific ridges where it expands meridionally up to midlatitudes. In the rest of the domain, several regions coherent with the local wind stress curl are found. These are regions isolated by f/H contours, mostly deep basins. An analysis of the vorticity budget shows that, generally, topographic Sverdrup balance is the leading process for periods >= 50 days, but in some regions (resonant basins), diffusive and nonstationary terms are important. A model experiment shows that transients redistribute energy along f/H waveguides, contributing to drain resonant regions, as was hypothesized in previous works.
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页码:1 / 20
页数:20
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