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Two-layer model of wind-driven circulation in the Antarctic Ocean

机译:南极海域风驱循环的两层模型

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摘要

In this study, we investigate the wind-driven circulation in the Antarctic Ocean using a primitive two-layer model with realistic topography. A prominent feature of steady circulation driven by the annual mean wind stress is a clockwise(cyclonic) circulation in the lower layer at the Weddell Basin and the Australia Antarctic Basin. In particular, the circulation pattern in the Australia Antarctic Basin agrees with the observations. In these basins, negative vorticity input from the wind stress is transmitted to the lower layer through the diffusion term(Gent and McWilliams term) and causes prominent cyclonic gyres within closed geostrophic contours of f/H(f: Coriolis parameter, H: water depth). The model result forced by the seasonal wind stress shows that variations of the Antarctic Coastal Current are explained by wind stress variations along the coast. The transport of this current is determined by the integration of onshore Ekman transport along the coast. It is also shown that this Antarctic Coastal Current can be a part of the western boundary current in the Weddell Sea. On a time scale of 10 to 100 days, the variation of the upper layer thickness coincides with the sea level variation at Syowa Station. This variation might be attributed to coastal trapped waves driven by the alongshore wind stress.
机译:在这项研究中,我们使用具有现实地形的原始两层模型调查了南极海洋中的风驱动环流。由年平均风应力驱动的稳定环流的一个突出特征是在韦德尔盆地和澳大利亚南极盆地下层的顺时针(气旋)环流。特别是,澳大利亚南极盆地的环流模式与观察结果一致。在这些盆地中,来自风应力的负涡度通过扩散项(Gent和McWilliams项)传递到下层,并在f / H的封闭地转等高线内引起明显的气旋回旋(f:科里奥利参数,H:水深) )。由季节性风应力引起的模型结果表明,南极沿海水流的变化可以通过沿海岸的风应力变化来解释。这种电流的运输取决于沿海沿海陆上埃克曼运输的整合。还表明,这种南极沿海潮流可能是韦德尔海西部边界潮流的一部分。在10到100天的时间尺度上,上层厚度的变化与Syowa站的海平面变化一致。这种变化可能归因于沿岸风应力驱动的沿海捕获波。

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