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The reflection of bounded in homogeneous waves on a liquid/solid interface

机译:均匀波在液体/固体界面上的边界反射

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Fourier analysis and normal mode theory are used to describe the reflection of bounded inhomogeneous waves on a liquid/solid interface. Nonspecular reflection phenomena in the Rayleigh angle are studied in detail. In this way, an explanation is given for the Rayleigh dip phenomenon for positive inhomogeneity factors and the related result of a reflection coefficient larger than unity when the sign of the inhomogeneity factor is reversed. In the limit of large beamwidths, the reflection coefficient predicted by the infinite plane inhomogeneous wave theory is obtained. These results are entirely consistent with the experimental work published by Deschamps [J. Acoust. Soc. Am. 96, 2841-2848 (1994)]. The energy efficiency of Rayleigh wave excitation is investigated as well. It is shown that for large beamwidths, the energy efficiency for bounded inhomogeneous waves is considerably higher in comparison with Gaussian and square-profiled beams.
机译:傅里叶分析和法向模理论被用来描述有界的不均匀波在液/固界面上的反射。详细研究了瑞利角的非镜面反射现象。以这种方式,给出了对于正的不均匀性因子的瑞利倾角现象的解释,以及当不均匀性因子的符号反转时反射系数大于1的相关结果的解释。在大束宽的限制下,获得了无限平面非均匀波理论预测的反射系数。这些结果与Deschamps [J. co Soc。上午。 96,2841-2848(1994)]。还研究了瑞利波激发的能量效率。结果表明,对于大束宽,与高斯光束和方形光束相比,有界非均匀波的能量效率要高得多。

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