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Integrable motion of a vortex dipole in an axisymmetric flow

机译:轴对称流中涡旋偶极子的可积分运动

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The evolution of a self-propelling vortex dipole, embedded in an external nondivergent flow with constant potential vorticity, is Studied in an equivalent-barotropic model commonly used in geophysical, astrophysical and plasma studies. In addition to the conservation of the Hamiltonian for an arbitrary point vortex dipole, it is found that the angular momentum is also conserved when the external flow is axisymmetric. This reduces the original four degrees of freedom to only two, so that the solution is expressed in quadratures. In particular, the scattering of antisymmetric dipoles approaching from the infinity is analyzed in the presence of an axisymmetric oceanic flow typical for the vicinity of isolated seamounts. (C) 2008 Elsevier B.V. All rights reserved.
机译:在地球物理,天体物理和等离子研究中常用的等压正压模型中研究了嵌入在外部恒定流中的自发涡旋偶极子的演化。除了对于任意点涡旋偶极子保持哈密顿量外,还发现当外流轴对称时角动量也守恒。这样可以将原始的四个自由度减少到只有两个,从而使解以正交表示。特别是,在存在典型的孤立海山附近的轴对称海流的情况下,分析了从无限远处接近的反对称偶极子的散射。 (C)2008 Elsevier B.V.保留所有权利。

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