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Full-wave model and numerical study of electromagnetic plane wave scattering by multilayered, fiber-based periodic composites

机译:多层纤维基周期复合材料电磁平面波散射的全波模型和数值研究

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The present work aims at building up a full-wave computational model of electromagnetic nondestructive testing of composite materials produced by stacking up dielectric slabs one over the other. In each such dielectric slab, a periodic array of infinite cylindrical fibers is embedded. Electromagnetic scattering of such a multilayered, fiber-based periodic composite is investigated here for an obliquely incident plane wave, the plane of incidence of which differs from the plane orthogonal to the fibers' axes. Full-wave field representations are given first by multipole and plane wave expansions. Mode matching at boundaries between layers then yields the propagating matrices, which are applied to connect reflection and transmission coefficients of the longitudinal field components. Power reflection and transmission coefficients are obtained from time-averaged Poynting vectors. Numerical experiments with comparisons with known results illustrate the accuracy of the model proposed.
机译:本工作的目的是建立一个通过将电介质板彼此堆叠而形成的复合材料电磁无损检测的全波计算模型。在每个这样的介电平板中,嵌入了无限圆柱纤维的周期性阵列。对于倾斜入射的平面波,本文研究了这种多层的,基于纤维的周期性复合材料的电磁散射,该入射平面与正交于纤维轴的平面不同。首先通过多极和平面波扩展给出全波场表示。然后在层之间的边界处的模式匹配产生传播矩阵,该传播矩阵被用于连接纵向场分量的反射系数和透射系数。功率反射和透射系数是从时间平均Poynting向量获得的。数值实验与已知结果的比较说明了所提出模型的准确性。

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