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首页> 外文期刊>Journal of Fluid Mechanics >The merger of vertically offset quasi-geostrophic vortices
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The merger of vertically offset quasi-geostrophic vortices

机译:垂直偏移准地转涡旋的合并

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We examine the critical merging distance between two equal-volume, equal-potential-vorticity quasi-geostrophic vortices. We focus on how this distance depends on the vertical offset between the two vortices, each having a unit mean height-to-width aspect ratio. The vertical direction is special in the quasi-geostrophic model (used to capture the leading-order dynamical features of stably stratified and rapidly rotating geophysical flows) since vertical advection is absent. Nevertheless vortex merger may still occur by horizontal advection. In this paper, we first investigate the equilibrium states for the two vortices as a function of their vertical and horizontal separation. We examine their basic properties together with their linear stability. These findings are next compared to numerical simulations of the nonlinear evolution of two spheres of potential vorticity. Three different regimes of interaction are identified, depending on the vertical offset. For a small offset, the interaction differs little from the case when the two vortices are horizontally aligned. On the other hand, when the vertical offset is comparable to the mean vortex radius, strong interaction occurs for greater horizontal gaps than in the horizontally aligned case, and therefore at significantly greater full separation distances. This perhaps surprising result is consistent with the linear stability analysis and appears to be a consequence of the anisotropy of the quasi-geostrophic equations. Finally, for large vertical offsets, vortex merger results in the formation of a metastable tilted dumbbell vortex. [References: 21]
机译:我们研究了两个等体积,等势涡旋拟地转涡旋之间的临界合并距离。我们关注于该距离如何取决于两个涡流之间的垂直偏移,每个涡流具有单位平均纵横比。由于没有垂直对流,因此在准地转模型中垂直方向是特殊的(用于捕获稳定分层和快速旋转的地球物理流的前导动力学特征)。尽管如此,涡旋合并仍可能通过水平对流发生。在本文中,我们首先研究两个旋涡的平衡状态作为其垂直和水平间隔的函数。我们检查了它们的基本特性及其线性稳定性。接下来,将这些发现与两个潜在涡度球体非线性演化的数值模拟进行比较。根据垂直偏移,确定了三种不同的交互方式。对于较小的偏移量,其相互作用与两个漩涡水平对齐时的情况几乎没有区别。另一方面,当垂直偏移量与平均涡旋半径相当时,与水平排列的情况相比,较大的水平间隙会发生强烈的相互作用,因此在全分离距离处会明显更大。这个也许令人惊讶的结果与线性稳定性分析是一致的,并且似乎是准地转方程的各向异性的结果。最后,对于较大的垂直偏移,涡旋合并会导致形成亚稳态倾斜哑铃涡旋。 [参考:21]

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