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The effective ellipsoid: a method for calculating the permittivity of composites with multilayer ellipsoids

机译:有效椭球:一种计算多层椭球复合材料介电常数的方法

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In order to calculate the effective permittivity of a mixture with multilayer ellipsoids, this paper presents a self-consistent approximation (SCA) on the basis of the Bruggeman’s analytical model. The effective permittivity of a mixture with aligned multilayer ellipsoids is derived directly from the linear system of equations, which are built using the boundary condition of the electric field on the confocal ellipsoidal interface in the ellipsoidal coordinate system. Furthermore, for a mixture with multilayer ellipsoids oriented randomly, an effective ellipsoid is introduced to substitute the original multilayer ellipsoid, and the permittivity of the effective ellipsoid is derived by jointly solving the two linear systems of equations for the situation of the original multilayer ellipsoid and that of the effective ellipsoid, then the effective permittivity of the mixture can be calculated by the existing Maxwell-Garnett formula. After comparisons, it is revealed that there is a good agreement between this SCA method and existing theories.
机译:为了计算具有多层椭球体的混合物的有效介电常数,本文在布鲁格曼(Bruggeman)分析模型的基础上提出了自洽近似(SCA)。具有对准的多层椭圆体的混合物的有效介电常数直接从线性方程组导出,该线性方程组是使用椭圆坐标系中共焦椭圆体界面上的电场边界条件建立的。此外,对于多层椭球体随机取向的混合物,引入有效椭球体替代原始多层椭球体,并通过针对原始多层椭球体和线性椭球体的情况联合求解两个线性方程组,得出有效椭球体的介电常数。有效椭圆率,则可以通过现有的Maxwell-Garnett公式计算混合物的有效介电常数。经过比较,发现该SCA方法与现有理论之间有很好的一致性。

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