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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Inclusion's distribution pattern's influence on mixture's effective permittivity in two dimension utilizing finite difference method (FDM)
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Inclusion's distribution pattern's influence on mixture's effective permittivity in two dimension utilizing finite difference method (FDM)

机译:包括分配模式对混合混合物有效介电常数的影响利用有限差分法(FDM)

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摘要

In this paper, a numerical technique based on two dimensional finite difference method (FDM) is utilized to study the effective permittivity of mixtures with various patterns of inclusions' distributions. The inclusions are assumed to be periodically distributed in the host medium. The influence of the inclusions' shape, permittivity, volume fraction and randomness are investigated in the simulation. Three categories of inclusions' types are considered, which are solid, hollow and randomly distributed inclusion. The shapes of solid inclusion type include square, cylinder, diamond and plus. The shapes of hollow inclusion type include square, cylinder, diamond and grid. The shapes of randomly distributed inclusion type include fine-grained inclusions and coarse-grained inclusions. The results of FDM methods are also compared with that of the analysis. Several analysis formulas are considered, such as Maxwell-Garnett, Bruggeman, Birchak, Looyenga and Lichtenecker. For all shapes of solid patterns except the plus, the simulated effective dielectric properties of mixtures are in good agreement with that obtained by Maxwell- Garnett prediction formula. When the contrast of permittivities between the inclusions and the environment is high, the numerical results for the square solid pattern match well with the analytical results provided by the Maxwell-Garnett formula. For other patterns, no analytical formulas can be implemented appropriately. The FDM results of hollow patterns deviate from the theoretical results significantly. In addition, for mixtures with randomly distributed inclusions, the effective permittivity achieved by the numerical technique varies almost linearly with volume fraction, which does not agree well with any analysis formula.
机译:本文利用基于二维有限差分方法(FDM)的数值技术来研究用各种夹杂物分布模式的混合物的有效介电常数。假设夹杂物定期分布在宿主培养基中。在模拟中研究了夹杂物形状,介电常数,体积分数和随机性的影响。考虑了三种类别的夹杂物类型,是固体,中空和随机分布的包涵体。固体包涵式的形状包括方形,圆筒,金刚石和加号。中空夹杂物类型的形状包括正方形,圆筒,金刚石和栅格。随机分布的包涵式的形状包括细粒夹杂物和粗粒夹杂物。 FDM方法的结果也与分析的结果进行了比较。考虑了几种分析公式,例如Maxwell-Garnett,Bruggeman,Birachak,Loyenga和Lichtenecker。对于除了PLUS之外的所有形状的固体图案,混合物的模拟有效介电特性与Maxwell-Garnett预测公式获得的良好一致。当夹杂物与环境之间的允许性相比之下时,方形实体图案的数值结果与由Maxwell-Garnett公式提供的分析结果匹配。对于其他模式,没有适当地实施分析公式。中空模式的FDM结果显着偏离理论结果。另外,对于随机分布式夹杂物的混合物,通过数值技术实现的有效介电常数几乎线性地随体积分数而变化,其与任何分析公式不太吻合。

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