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首页> 外文期刊>Geophysical and Astrophysical Fluid Dynamics >Piecewise uniform potential vorticity pancake shielded vortices
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Piecewise uniform potential vorticity pancake shielded vortices

机译:分段均匀潜在涡旋煎饼屏蔽涡旋

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摘要

Shielded vortices consist of a core of potential vorticity (PV) of a given sign surrounded (or shielded) by a layer of opposite-signed PV. Such vortices have specific properties and have been the focus of numerous studies, first in two dimensional geometries (where PV is just the vertical component of the vorticity vector) and in geophysical applications (mostly in layered models). The present paper focuses on three-dimensional, spheroidal shielded vortices. In particular, we focus on vortical structures whose overall volume-integrated PV is zero. We restrict attention to vortices of piecewise uniform PV in the present research. We first revisit the problem within the quasi-geostrophic model, then we extend the results to the non-hydrostatic regime. We show that the stability of the structure depends on the ratio of PV between the inner core and the outer shield. In particular it depends on the polarity of the core and of the wavenumber of the azimuthal mode perturbed.
机译:屏蔽涡旋由给定符号的潜在涡度(PV)的核心由一层相对符号的PV包围(或屏蔽)。 这种涡流具有特定的性质,并且已经是许多研究的焦点,首先在二维几何形状(其中PV只是涡度向量的垂直分量)和在地球物理应用中(主要是层叠模型)。 本文侧重于三维球形屏蔽涡流。 特别是,我们专注于整体集成光伏为零的涡旋结构。 我们在本研究中限制了对分段制服PV的涡流。 我们首先重新审视拟地球滴性模型中的问题,然后我们将结果扩展到非静水状态。 我们表明,结构的稳定性取决于内芯和外屏蔽之间的PV的比率。 特别地,这取决于核心的极性和方位角模式的扰动的波数。

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