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Influence of asymmetric wind stress curl on the general ocean circulation using an eddy-resolving quasi-geostrophic model

机译:用涡旋解析准地转模型对非对称风应力卷曲对海洋总体环流的影响

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On the general ocean circulation forced by the asymmetric wind stress curl, the role of the eddies which are detached from the western boundary current is studied using an eddy-resolving two-layered quasi-geostrophic numerical model with free-slip boundary condition. An ideal sinusoidal function is used as the wind stress curl, and amplitude is assumed to be larger over the southern basin than over the northern one. In contrast with the antisymmetric wind forcing, in the asymmetric wind stress case, the subtropical western boundary current overshoots to the north from the zero wind stress curl line. As the asymmetricity of the wind forcing becomes larger, the separation point of the time mean field is located further north. The eddies generated in the region of the subtropical recirculation are advected northward by the western boundary current and they are detached from subtropical gyre. The release of these eddies to the north basin leads to weaken the subtropical recirculation system. From the analysis of the potential vorticity budgets, in the asymmetric case, it is shown that detached eddies play an important role in transporting the negative vorticity which is excessively inputted into the southern basin, to the northern basin, in addition to the terms which transport vorticity in the antisymmetric case, i.e., the vorticity transport by the meander of the jet. Under the free-slip boundary, more than a quarter of that excess vorticity is transported by those detached eddies in some cases.
机译:在由非对称风应力卷曲推动的一般海洋环流中,利用具有自由滑动边界条件的解析涡旋的两层拟地转数值模型,研究了涡旋与西边界流分离的作用。理想的正弦函数用作风应力卷曲,并且假设南部盆地的振幅大于北部盆地的振幅。与反对称风力相比,在非对称风力情况下,亚热带西部边界电流从零风力应力卷曲线向北超调。随着风力的不对称性变大,时间平均场的分离点位于更北的位置。在亚热带回旋区产生的涡流被西部边界流向北平流,并与亚热带回旋管分离。这些漩涡向北流域的释放导致削弱了亚热带的再循环系统。通过对潜在涡度预算的分析,在非对称情况下,表明涡旋在将过量输入南流向北流域的负涡流输送到北流域中起着重要作用。在非对称情况下的涡度,即射流的曲率传输。在自由滑移边界下,在某些情况下,超过四分之一的涡旋是由那些分离的涡流传递的。

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