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Acoustic wave diffraction at the upper edge of a two-dimensional periodic array of finite rigid cylinders. A comprehensive design model of periodicity-based devices

机译:有限刚性圆柱的二维周期阵列的上边缘处的声波衍射。基于周期的设备的综合设计模型

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Diffraction at the upper edge of a two-dimensional periodic array of finite rigid cylinders immersed in air as well as the effect on its wave propagation properties are numerically and experimentally reported in this work. The diffraction and the band gap effects, due to the finite length of the cylinders and the periodicity of the array, are the two phenomena that must be taken into account in the design of real devices based on periodicity to control the propagation of waves. We also present a model which allows the separate analysis of each of these two phenomena and provides a comprehensive procedure for designing more efficient devices based on arrays of scatterers, following the concept of tunability developed by some authors.
机译:在这项工作中,在数值上和实验上报道了浸入空气中的有限刚性圆柱的二维周期阵列的上边缘处的衍射及其对其波传播特性的影响。由于圆柱体的有限长度和阵列的周期性,衍射和带隙效应是在基于周期性来控制波传播的实际设备设计中必须考虑的两个现象。我们还提出了一个模型,该模型允许对这两种现象中的每一种进行单独分析,并遵循一些作者提出的可调谐性概念,为基于散射体阵列设计更高效的设备提供了一个全面的过程。

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