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Thermodynamic formalization of the fluid dynamics equations for a charged dielectric in an electromagnetic field

机译:电磁场中带电电介质的流体动力学方程的热力学形式化

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Minkowski's classical work underlying modern electrodynamics is described. Primary attention is given to the mathematical refinements that are required if the parameters e{open} and μ depend on the properties of the dielectric fluid, i. e., the medium carrying charges in the field under study. It is shown that the motion of the medium and the accompanying evolution of the electromagnetic field are described by differential equations that are symmetric and hyperbolic in the sense of Friedrichs. This property guarantees their well-posedness. Note that this class of equations was not known in Minkowski's time. At present, it plays an important role in the mathematical simulation of nonstationary processes and in the design of numerical algorithms. The author's view of the mathematical foundations of Minkowski's work is presented, which relates the latter to present-day insights into the theory of differential equations. This paper can possibly be of interest to physicists.
机译:描述了闵可夫斯基在现代电动力学基础上的经典著作。如果参数e {open}和μ取决于介电流体的特性,即i,则主要关注数学精炼。例如,在研究领域中携带电荷的介质。结果表明,介质的运动以及随之而来的电磁场的演化由在弗里德里希斯意义上对称且双曲的微分方程描述。此属性保证了它们的适度性。请注意,在Minkowski时代还不知道这类方程。目前,它在非平稳过程的数学模拟和数值算法的设计中起着重要作用。提出了作者对Minkowski的数学基础的看法,这将后者与对微分方程理论的最新见解联系起来。物理学家可能会对本文感兴趣。

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