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Hamiltonian magnetohydrodynamics: Lagrangian, Eulerian, and dynamically accessible stability-Examples with translation symmetry

机译:哈密​​顿磁流体动力学:拉格朗日,欧拉和动态可及的稳定性-具有平移对称性的示例

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Because different constraints are imposed, stability conditions for dissipationless fluids and magnetofluids may take different forms when derived within the Lagrangian, Eulerian (energy-Casimir), or dynamically accessible frameworks. This is in particular the case when flows are present. These differences are explored explicitly by working out in detail two magnetohydrodynamic examples: convection against gravity in a stratified fluid and translationally invariant perturbations of a rotating magnetized plasma pinch. In this second example, we show in explicit form how to perform the time-dependent relabeling introduced in Andreussi et al. [Phys. Plasmas 20, 092104 (2013)] that makes it possible to reformulate Eulerian equilibria with flows as Lagrangian equilibria in the relabeled variables. The procedures detailed in the present article provide a paradigm that can be applied to more general plasma configurations and in addition extended to more general plasma descriptions where dissipation is absent. Published by AIP Publishing.
机译:由于施加了不同的约束,因此在拉格朗日,欧拉(能量-卡西米尔)或动态可访问的框架中得出的无耗散流体和磁流体的稳定性条件可能采用不同的形式。当存在流量时尤其如此。通过详细研究两个磁流体动力学示例来明确探索这些差异:分层流体中重力的对流和旋转的磁化等离子体收缩的平移不变扰动。在第二个示例中,我们以显式形式显示如何执行Andreussi等人中介绍的与时间相关的重新标记。 [物理Plasmas 20,092104(2013)],从而可以在重新标记的变量中以拉格朗日平衡流的形式重新构造欧拉平衡。本文中详细介绍的过程提供了一种范例,该范例可应用于更一般的等离子体配置,此外还可扩展到不存在耗散的更一般的等离子体描述。由AIP Publishing发布。

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