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Numerical scattering analysis for two-dimensional dense randommedia: characterization of effective permittivity

机译:二维稠密随机介质的数值散射分析:有效介电常数的表征

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A new numerical method for determining effective permittivity of dense random media in two dimensions is presented. The core of the method is to compare the average scattered field of a random collection of scatterers confined within an imaginary boundary with the scattered field from a homogeneous dielectric of the same shape as the imaginary boundary. The two-dimensional (2-D) problem is aggressively studied to provide insight into the dependence of the method's convergence on particle size, boundary shape, and boundary dimension. A novel inverse scattering method is introduced based on the method of moments (MoM), which greatly reduces the computation time and increases the flexibility of the procedure to analyze a variety of geometries. Results from this 2-D method may be used directly to compare with theoretical methods for determining effective permittivity such as the Polder-Van Santen (1946) mixing formula or field techniques such as the quasi-crystalline approximation
机译:提出了一种确定二维稠密随机介质有效介电常数的新方法。该方法的核心是将随机集合在虚构边界内的散射体的平均散射场与形状与虚构边界相同形状的均质电介质的散射场进行比较。积极研究了二维(2-D)问题,以深入了解该方法的收敛性对粒度,边界形状和边界尺寸的依赖性。基于矩量法(MoM),提出了一种新颖的逆散射方法,该方法大大减少了计算时间,增加了分析各种几何形状的过程的灵活性。这种二维方法的结果可直接用于与确定有效介电常数的理论方法进行比较,例如Polder-Van Santen(1946)混合公式或现场技术(例如准晶体近似)

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