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Merger Criterion for Two Vortices in 3D Quasi-Geostrophic Flow

机译:三维准出色流动中的两个涡流的合并标准

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In this study we examine the interaction between two like-signed quasi-geostrophic vortices containing different uniform potential vorticity. The interaction depends on 6 parameters: the potential vorticity ratio between the two vortices, their volume ratio, their individual height-to-width aspect ratio, their vertical offset and their horizontal separation distance. We first calculate equilibrium states using an asymptotic approach which models the vortices as ellipsoids and then determine their linear stability. It is found that two vortices can merge at farther distances when one has stronger potential vorticity than the other. This tells us that interaction between vortices having significantly different potential vorticity may be more destructive, for a given separation distance. Most of the vortex interactions for the considered parameter space are in the partial-merger regime (where the largest vortex grows in volume) and this happens between vortices of similar po! tential vorticity.
机译:在这项研究中,我们检查含有不同均匀潜在涡流的两种类似符号的准滴热涡流之间的相互作用。相互作用取决于6个参数:两个涡流之间的电位涡度比,其体积比,其各自的高度到宽度纵横比,它们的垂直偏移和水平分离距离。我们首先使用渐变方法计算平衡状态,该方法将涡流模拟为椭圆体,然后确定它们的线性稳定性。结果发现,当一个比另一个具有更强的潜在漩涡时,两个涡流可以在更远的距离处合并。这告诉我们,对于给定的分离距离,具有显着不同潜在涡流的涡流之间的相互作用可能更具破坏性。考虑参数空间的大多数涡流相互作用都是部分合并制度(最大的涡流增长卷),这在类似PO的涡旋之间发生!矫形涡旋。

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