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首页> 外文期刊>International Journal of Engineering Science >Electrostatic interactions of arbitrarily dispersed multicoated elliptic cylinders
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Electrostatic interactions of arbitrarily dispersed multicoated elliptic cylinders

机译:任意分散的多层椭圆圆柱体的静电相互作用

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摘要

We propose a theoretical framework for evaluation of electrostatic potentials in an unbounded isotropic matrix containing a number of arbitrarily dispersed elliptic cylinders subjected to a remotely prescribed potential field. The inclusions could be homogeneous or confocally multicoated, and may have different sizes, aspect ratios and different conductivities. The approach is based on a multipole expansion formalism, together with a construction of consistency conditions and translation operators. This procedure generalizes the approach of the classic work of Rayleigh [1 ] for a periodic array of circular disks or spheres to an arbitrarily dispersion of elliptic cylinders. We combine the methods of complex potentials with a re-expansion formulae and the generalized Rayleigh's formualtion to obtain a complete solution of the many-inclusion problem. We show that the coefficients of field expansions can be written in the form of an infinite set of linear algebraic equations. Numerical results are presented for several configuarions. We further apply the obtained field solutions to determine the effective conductivity of the composite.
机译:我们提出了一个理论框架,用于评估无边界的各向同性矩阵中的静电势,该矩阵包含许多受远程指定势场约束的任意分散的椭圆圆柱体。夹杂物可以是均匀的或共焦的多层涂层,并且可以具有不同的尺寸,纵横比和不同的电导率。该方法基于多极扩展形式主义,以及一致性条件和转换运算符的构造。此过程概括了Rayleigh [1]的经典工作的方法,即将圆盘或球的周期性阵列随机分散到椭圆圆柱上。我们将复杂势的方法与重新展开公式和广义的Rayleigh形式化相结合,从而获得了对许多包含问题的完整解决方案。我们证明了场扩展系数可以以无限组线性代数方程的形式来写。给出了几种配置的数值结果。我们进一步应用获得的现场解决方案来确定复合材料的有效电导率。

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