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首页> 外文期刊>Journal of nonlinear science >Dissipative N-point-vortex Models in the Plane
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Dissipative N-point-vortex Models in the Plane

机译:平面中的耗散N点涡模型

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摘要

A method is presented for constructing point vortex models in the plane that dissipate the Hamiltonian function at any prescribed rate and yet conserve the level sets of the invariants of the Hamiltonian model arising from the SE (2) symmetries. The method is purely geometric in that it uses the level sets of the Hamiltonian and the invariants to construct the dissipative field and is based on elementary classical geometry in a"e(3). Extension to higher-dimensional spaces, such as the point vortex phase space, is done using exterior algebra. The method is in fact general enough to apply to any smooth finite-dimensional system with conserved quantities, and, for certain special cases, the dissipative vector field constructed can be associated with an appropriately defined double Nambu-Poisson bracket. The most interesting feature of this method is that it allows for an infinite sequence of such dissipative vector fields to be constructed by repeated application of a symmetric linear operator (matrix) at each point of the intersection of the level sets.
机译:提出了一种在平面上构造点涡流模型的方法,该方法以任何规定的速率耗散哈密顿函数,但仍保留由SE(2)对称性引起的哈密顿模型不变性的水平集。该方法是纯几何的,因为它使用汉密尔顿量级和不变量的水平集来构造耗散场,并且基于“ e(3)”中的基本经典几何。扩展到高维空间,例如点涡旋实际上,该方法足够通用,可以应用于任何具有守恒量的光滑有限维系统,并且在某些特殊情况下,构造的耗散矢量场可以与适当定义的双Nambu相联系。 -泊松括号该方法最有趣的特征是,它允许通过在级集的交点的每个点重复应用对称线性算子(矩阵)来构造无限大的此类耗散矢量场序列。

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