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首页> 外文期刊>Journal of Physical Oceanography >Erosion of a Surface Vortex by a Seamount
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Erosion of a Surface Vortex by a Seamount

机译:海山对表面涡旋的侵蚀

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Numerical experiments are carried out on the f plane, using a shallow-water isopycnal model, to analyze the behavior of a surface-intensified anticyclonic vortex when it encounters an isolated seamount. The advection by the vortex of deep fluid parcels across the isobaths is known to generate deep anticyclonic and cyclonic circulations above and near the bathymetry, respectively. These circulations are shown to exert a strong shear on the upper layers, which causes an erosion of the initial vortex by filamentation. The erosion often results in a subdivision of the eddy. While the eroded original structure forms a dipole with the deep cyclone and is advected away, the filaments torn off from the original core aggregate into a new eddy above the seamount. Splitting in more than two structures is sometimes observed. The erosion process is quantified by the bulk volume integral of the eddy potential vorticity anomaly. A sensitivity study to different parameters of the configuration (distance between vortex and seamount, vortex radius, seamount radius, seamount height, or stratification) shows that the intensities of the deep anticyclonic and cyclonic circulations and the vortex erosion are governed both by the reservoir of positive potential vorticity associated with the seamount and by the strength of the cross-isobath flow induced by the eddy.
机译:使用浅水等渗模型在f平面上进行了数值实验,以分析表面增强的反气旋涡旋在遇到孤立海山时的行为。众所周知,深水包裹在等深线上的涡流平流分别在测深仪的上方和附近产生深的反气旋和旋风循环。这些循环表现为在上层上施加强剪切力,这导致初始涡旋被细丝腐蚀。侵蚀经常导致涡流的细分。当受侵蚀的原始结构与深层的旋风形成偶极子并被平移时,从原始岩心上撕下来的细丝会聚集到海山上方的新涡流中。有时会观察到分裂成两个以上的结构。腐蚀过程通过涡旋涡度异常的整体体积积分来量化。对构型的不同参数(旋涡与海山之间的距离,旋涡半径,海山半径,海山高度或分层)的敏感性研究表明,深层反气旋和气旋环流的强度以及涡旋侵蚀均受南极洲的储层支配。与海山相关的正势涡度,以及涡流引起的等温槽流动强度。

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