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首页> 外文期刊>Quarterly of Applied Mathematics >A MULTISCALE METHOD FOR COMPUTING EFFECTIVE PARAMETERS OF COMPOSITE ELECTROMAGNETIC MATERIALS WITH MEMORY EFFECTS
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A MULTISCALE METHOD FOR COMPUTING EFFECTIVE PARAMETERS OF COMPOSITE ELECTROMAGNETIC MATERIALS WITH MEMORY EFFECTS

机译:一种多尺度方法,用于计算复合电磁材料的内存效应

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摘要

We consider the problem of computing (macroscopic) effective properties of composite materials that are mixtures of complex dispersive dielectrics described by polarization and magnetization laws. We assume that the micro-structure of the composite material is described by spatially periodic and deterministic parameters. Mathematically, the problem is to homogenize Maxwell's equations along with constitutive laws that describe the material response of the micro-structure comprising the mixture, to obtain an equivalent effective model for the composite material with constant effective parameters. The novel contribution of this paper is the homogenization of a hybrid model consisting of the Maxwell partial differential equations along with ordinary (auxiliary) differential equations modeling the evolution of the polarization and magnetization, as a model for the complex dielectric material. This is in contrast to our previous work (2006) in which we employed a convolution in time of a susceptibility kernel with the electric field to model the delayed polarization effects in the dispersive material. In this paper, we describe the auxiliary differential equation approach to modeling material responses in the composite material and use the periodic unfolding method to construct a homogenized model.
机译:我们考虑复合材料的计算(宏观)有效性质的问题,其是通过极化和磁化法描述的复杂分散电介质的混合物。我们假设通过空间周期性和确定性参数描述复合材料的微结构。在数学上,问题是使Maxwell的方程以及描述包括混合物的微结构的材料响应的本构规定,以获得具有恒定有效参数的复合材料的等效有效模型。本文的新颖贡献是由麦克风局部微分方程组成的混合模型的均匀化,以及模拟偏振和磁化的演化的普通(辅助)差分方程,作为复合电介质材料的模型。这与我们之前的工作相反(2006年),我们在其中使用了与电场的敏感性核的时间卷积,以模拟分散材料中的延迟极化效应。本文描述了辅助微分方程方法来建模复合材料中的材料响应,并使用周期性展开方法构建均质模型。

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