带有笛卡尔正交介电材料的圆柱形二维电容器电容的边界公式

A. Baksa, I. Ecsedi
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引用次数: 0

摘要

本文论述了对具有同质笛卡尔各向异性介电材料的二维圆柱形电容器的评估。研究的核心是边界公式的开发,其基础是考希-施瓦茨不等式原理,这是一个被广泛认可的数学概念,用于建立不同数学实体之间的关系。在研究过程中,通过应用成熟的不等式关系,系统地推导出了圆柱形二维电容器的双面约束。这些约束在设定系统电容极限方面发挥了关键作用,为了解其电气行为提供了宝贵的见解。
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Bounding Formulae for the Capacitance of a Cylindrical Two-dimensional Capacitor with Cartesian Orthotropic Dielectric Material
This paper addresses the evaluation of a two-dimensional cylindrical capacitor featuring homogeneous Cartesian anisotropic dielectric material. The development of a bounding formula forms the crux of the investigation and is grounded in the principles of the Cauchy-Schwarz inequality, a mathematical concept widely acknowledged for establishing relationships between different mathematical entities. In the course of this study, a dual-sided bound is systematically derived for the circular cylindrical two-dimensional capacitor through the application of well-established inequality relations. These bounds play a pivotal role in setting limits on the capacitance of the system, providing valuable insights into its electrical behavior.
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