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Multiple diffraction of obliquely incident plane waves by a three–part impedance plane

机译:倾斜入射平面波通过三部分阻抗平面的多重衍射

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摘要

Uniform asymptotic high-frequency solution is developed for the diffraction of obliquely incident plane waves by a three-part impedance plane. The multiple interaction up to third order between the edges of the three-part impedance plane is obtained to yield a uniform scattered field. The employed formulations are based on a spectral iteration techique consisting of taking the Fourier integral representation of the n.tuply diffracted field by one junction as the incident field for the two-part plane where the (n+1)th diffraction will occur. Upon using the field components normal to the three-part surface, the (n+1)th diffracted field is obtained through the solution of a pair uncoupled Wiener-Hopf equations. The contribution of the surface wave fields to the secondary as well as triply diffraction is included in the analysis.
机译:提出了一种均匀的渐近高频解,用于通过三部分阻抗平面对倾斜入射平面波进行衍射。获得三部分阻抗平面的边缘之间的直到三阶的多重相互作用,以产生均匀的散射场。所采用的公式是基于频谱迭代技术的,该技术包括将一个结点的第n个完全衍射场的傅立叶积分表示作为将发生第(n + 1)个衍射的两部分平面的入射场。在使用垂直于三部分表面的场分量时,通过一对未耦合的Wiener-Hopf方程的解获得第(n + 1)个衍射场。分析中包括表面波场对二次衍射和三次衍射的贡献。

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