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Analysis and numerical simulation of magnetic forces between rigid polygonal bodies. Part I: Analysis

机译:刚性多边形体之间的磁力分析和数值模拟。第一部分:分析

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The mathematical and physical analysis of magnetoelastic phenomena is a topic of ongoing research. Different formulae have been proposed to describe the magnetic forces in macroscopic systems. We discuss several of these formulae in the context of rigid magnetized bodies. In case the bodies are in contact, we consider formulae both in the framework of macroscopic electrodynamics and via a multiscale approach, i.e., in a discrete setting of magnetic dipole moments. We give mathematically rigorous proofs for domains of polygonal shape (as well as for more general geometries) in two and three space dimensions. In an accompanying second article, we investigate the formulae in a number of numerical experiments, where we focus on the dependence of the magnetic force on the distance between the bodies and on the case when the two bodies are in contact. The aim of the analysis as well as of the numerical simulation is to contribute to the ongoing debate about which formula describes the magnetic force between macroscopic bodies best and to stimulate corresponding real-life experiments.
机译:磁弹性现象的数学和物理分析是正在进行的研究的主题。已经提出了不同的公式来描述宏观系统中的磁力。我们在刚性磁化体的背景下讨论这些公式中的几个。如果物体相互接触,我们将在宏观电动力学的框架内以及通过多尺度方法(即在磁偶极矩的离散设置下)考虑公式。我们对在两个和三个空间维度上的多边形形状域(以及更一般的几何形状)给出了严格的数学证明。在随附的第二篇文章中,我们在许多数值实验中研究了这些公式,其中我们重点研究了磁力对物体之间距离的依赖性以及两个物体接触时的情况。分析和数值模拟的目的是促进有关哪个公式最能描述宏观物体之间的磁力的争论,并激发相应的实际实验。

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