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Two-Layer Geostrophic Vortex Dynamics. Part 2. Alignment and Two-Layer V-States

机译:两层地转涡旋动力学。第2部分。对齐和两层V态

摘要

The process of alignment, a new fundamental interaction between vortices in a stratified and rapidly rotating fluid, is defined and studied in detail in the context of the two-layer quasi-geostrophic model. Alignment occurs when two vortices in different density layers coalesce by reducing their horizontal separation. It is found that only vortices whose radii are comparable with or larger than the Rossby deformation radius can align. In the same way as the merger process (in a single two dimensional layer) is related to the reverse energy cascade of two-dimensional turbulence, geostrophic potential vorticity alignment is related the barotropic-to baroclinic energy cascade of geostrophic turbulence in two layers. It is also shown how alignment is intimately connected with the existence of two-layer doubly connected geostrophic potential vorticity equilibria (V-states), for which the analysis of the geometry of the stream function in the corotating frame is found to be a crucial diagnostic. The finite-area analogues of the hetons of Hogg and Stommel (1985) are also determined : they consist of a propagating pair of opposite-signed potential vorticity patches located in different layers.
机译:对准过程是分层和快速旋转的流体中涡旋之间的新的基本相互作用,它是在两层拟地转模型的背景下定义和详细研究的。当不同密度层中的两个涡旋通过减小其水平间隔而合并时,就会发生对准。发现只有半径等于或大于Rossby变形半径的涡流才能对齐。与合并过程(在单个二维层中)与二维湍流的反向能量级联相关的方式相同,地转势势涡度对齐与两层地转湍流的正压-斜压能量级联相关。还显示了对齐如何与两层双连接的地转势势涡平衡(V态)的存在紧密相关,对于同向旋转流中的流函数几何分析,这是至关重要的诊断方法。还确定了Hogg和Stommel(1985)的赫顿的有限区域类似物:它们由位于不同层中的一对相反符号的潜在涡度斑传播。

著录项

  • 作者

    Lorenzo M. Polvani;

  • 作者单位
  • 年度 1991
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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