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A COMPARISON BETWEEN DIVERGENCE-CLEANING AND STAGGERED-MESH FORMULATIONS FOR NUMERICAL MAGNETOHYDRODYNAMICS

机译:数值磁流体动力学的发散清理和交错网状公式之间的比较

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摘要

In recent years, several different strategies have emerged for evolving the magnetic field in numerical MHD. Some of these methods can be classified as divergence-cleaning schemes, in which one evolves the magnetic field components just like any other variable in a higher order Godunov scheme. The fact that the magnetic field is divergence-free is imposed post facto via a divergence-cleaning step. Other schemes for evolving the magnetic field rely on a staggered-mesh formulation that is inherently divergence-free. The claim has been made that the two approaches are equivalent. In this paper we compare three divergence-cleaning schemes based on scalar and vector divergence-cleaning and a popular divergence-free scheme. All schemes are applied to the same stringent test problem. Several deficiencies in all the divergence-cleaning schemes become clearly apparent, with the scalar divergence-cleaning schemes performing worse than the vector divergence-cleaning scheme. The vector divergence-cleaning scheme also shows some deficiencies relative to the staggered-mesh divergence-free scheme. The differences can be explained by realizing that all the divergence-cleaning schemes are based on a Poisson solver that introduces a nonlocality into the scheme, although other, subtler points of difference are also cataloged. By using several diagnostics that are routinely used in the study of turbulence, it is shown that the differences in the schemes produce measurable differences in physical quantities that are of interest in such studies.
机译:近年来,出现了几种不同的策略来发展数字MHD中的磁场。这些方法中的一些可以归类为发散清洗方案,其中,就像在更高阶的Godunov方案中的任何其他变量一样,磁场的演化也一样。磁场无发散的事实是事后通过发散清洁步骤施加的。用于演化磁场的其他方案依赖于固有无散度的交错网格公式。有人声称这两种方法是等效的。在本文中,我们比较了基于标量和矢量发散清洗的三种发散清洗方案以及流行的无散发方案。所有方案都适用于相同的严格测试问题。所有散度清洗方案中的几个缺陷变得很明显,标量散度清洗方案的性能比矢量散度清洗方案差。相对于无交错网的散度方案,矢量散度清洁方案也显示出一些缺陷。可以通过认识到所有差异清理方案都是基于Poisson求解器来解释差异的,该泊松求解器将非局部性引入方案中,尽管也列出了其他更细微的差异点。通过使用在湍流研究中常规使用的几种诊断方法,可以证明方案中的差异会产生可测量的物理量差异,这是此类研究中关注的。

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