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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Diffuse scattered field of elastic waves from randomly rough surfaces using an analytical Kirchhoff theory
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Diffuse scattered field of elastic waves from randomly rough surfaces using an analytical Kirchhoff theory

机译:使用解析基尔霍夫理论的随机粗糙表面弹性波的扩散散射场

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摘要

We develop an elastodynamic theory to predict the diffuse scattered field of elastic waves by randomly rough surfaces, for the first time, with the aid of the Kirchhoff approximation (KA). Analytical expressions are derived incorporating surface statistics, to represent the expectation of the angular distribution of the diffuse intensity for different modes. The analytical solutions are successfully verified with numerical Monte Carlo simulations, and also validated by comparison with experiments. We then apply the theory to quantitatively investigate the effects of the roughness and the shear-to-compressional wave speed ratio on the mode conversion and the scattering intensity, from low to high roughness within the valid region of KA. Both the direct and the mode converted intensities are significantly affected by the roughness, which leads to distinct scattering patterns for different wave modes. The mode conversion effect is very strong around the specular angle and it is found to increase as the surface appears to be more rough. In addition, the 3D roughness induced coupling between the out-of-plane shear horizontal (SH) mode and the in-plane modes is studied. The intensity of the SH mode is shown to be very sensitive to the out-of-plane correlation length, being influenced more by this than by the RMS value of the roughness. However, it is found that the depolarization pattern for the diffuse field is independent of the actual value of the roughness.
机译:我们首次借助基尔霍夫近似(KA),开发了一种弹性动力学理论来预测弹性波在随机粗糙表面上的弥散散射场。导出包含表面统计量的分析表达式,以表示对不同模式的散射强度的角度分布的期望。解析解决方案已通过数值蒙特卡洛模拟成功验证,并通过与实验比较得到了验证。然后,我们将该理论用于定量研究KA有效区域内粗糙度(从低到高)对粗糙度和剪切压缩波波速比对模式转换和散射强度的影响。直接强度和模式转换强度都会受到粗糙度的显着影响,这会导致不同波模式的散射模式不同。模式反射效果在镜面反射角附近非常强,并且发现随着表面看起来更粗糙而增加。此外,研究了平面外剪切水平(SH)模式与平面内模式之间的3D粗糙度诱导耦合。 SH模式的强度显示出对平面外相关长度非常敏感,受此影响比受粗糙度RMS值影响更大。然而,发现扩散场的去极化图案与粗糙度的实际值无关。

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