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Finite-difference simulation of rayleigh wave scattering at a surface crack with experimental verification

机译:实验验证表面裂纹瑞利波散射的有限差分仿真

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This paper describes a three-dimension finite-difference method to simulate the interaction of surface acoustic waves with finite-size, surface-breaking, and semi-circular cracks in steel specimen. The simulation is used to predict time-domain history of field displacements vertical to the surface of the steel specimen. We focus on the behavior of the reflection and transmission coefficient of the Rayleigh waves from such cracks in the far field of the crack, when the crack depth is comparable to the wavelength of the interrogating surface wave. The theoretical, finite-difference, and experimental results presented are in very good agreement over the range were the crack depth is much smaller or much larger compared to the wavelength of the incident Rayleigh wave. In the transition regime, between these two limiting cases, only the finite-difference and experimental data show good agreement since the theoretical predictions are no longer applicable. Furthermore, based on the finite-difference simulation and the laser interferometric measurement, the transmission coefficient of the surface wave scattering from the small surface crack was presented.
机译:本文介绍了一种三维有限差分方法,用于模拟表面声波具有有限尺寸,表面破碎和钢标本中半圆形裂缝的相互作用。模拟用于预测垂直于钢样本表面的现场位移的时域历史。当裂缝深度与询问表面波的波长相当时,我们专注于裂缝中的裂缝的反射波的反射和透射系数的行为。呈现的理论,有限差异和实验结果在非常良好的范围内与入射瑞利波的波长相比,裂纹深度远小得多或更大。在过渡制度中,在这两个限制的情况下,只有有限差分和实验数据显示出良好的一致性,因为理论预测不再适用。此外,基于有限差分模拟和激光干涉测量,提出了从小表面裂纹散射的表面波散射的透射系数。

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