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Diffusely scattered and transmitted elastic waves by random rough solid-solid interfaces using an elastodynamic Kirchhoff approximation

机译:使用弹性动力学Kirchhoff近似,通过随机粗糙的固 - 固界面进行漫散射和透射的弹性波

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摘要

Elastic waves scattered by random rough interfaces separating two distinct media play an important role in modeling phonon scattering and impact upon thermal transport models, and are also integral to ultrasonic inspection. We introduce theoretical formulas for the diffuse field of elastic waves scattered by, and transmitted across, random rough solid-solid interfaces using the elastodynamic Kirchhoff approximation. The new formulas are validated by comparison with numerical Monte Carlo simulations, for a wide range of roughness (rms σ≤λ/3, correlation length λ0≥ wavelength λ), demonstrating a significant improvement over the widely used small-perturbation approach, which is valid only for surfaces with small rms values. Physical analysis using the theoretical formulas derived here demonstrates that increasing the rms value leads to a considerable change of the scattering patterns for each mode. The roughness has different effects on the reflection and the transmission, with a strong dependence on the material properties. In the special case of a perfect match of the wave speed of the two solid media, the transmission is the same as the case for a flat interface. We pay particular attention to scattering in the specular direction, often used as an observable quantity, in terms of the roughness parameters, showing a peak at an intermediate value of rms; this rms value coincides with that predicted by the Rayleigh parameter.
机译:由分离两种不同介质的随机粗糙界面散射的弹性波在声子散射建模和热传输模型影响中起着重要作用,并且也是超声检查不可或缺的部分。我们使用弹性力学基尔霍夫近似,介绍了由随机粗糙固体-固体界面散布并通过其传播的弹性波扩散场的理论公式。通过与数值蒙特卡罗模拟进行比较,对较宽的粗糙度范围(均方根σ≤λ/ 3,相关长度λ0≥波长λ)进行了验证,新公式表明了与广泛使用的小扰动方法相比的显着改进,即仅对有效值较小的表面有效。使用此处导出的理论公式进行的物理分析表明,增加均方根值会导致每种模式的散射模式发生较大变化。粗糙度对反射和透射有不同的影响,强烈依赖于材料性能。在两种固体介质的波速完全匹配的特殊情况下,透射率与平面界面的情况相同。在粗糙度参数方面,我们特别注意在镜面方向上的散射(通常用作可观察的量),在rms的中间值处显示峰值。该均方根值与瑞利参数预测的值一致。

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  • 作者

    Shi, F; Lowe, M; Craster, R;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 English
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