A weak scattering attenuation model for Rayleigh waves in three-dimensional polycrystals with arbitrary symmetry.

IF 2.3 2区 物理与天体物理 Q2 ACOUSTICS
Shan Li, Yongfeng Song
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引用次数: 0

Abstract

This paper presents a theoretical model for the scattering attenuation of Rayleigh waves propagating along the stress-free planar surface of a three-dimensional (3D) semi-infinite polycrystalline medium with single-phase, untextured, equiaxed grains and arbitrary symmetry. The model can explain the behavior of the Rayleigh wave scattering into Rayleigh and bulk waves, i.e., it can provide a detailed calculation of Rayleigh-to-Rayleigh (R-R), Rayleigh-to-Shear (R-S), and Rayleigh-to-Longitudinal (R-L) attenuation separately. Numerical results reveal that the attenuation of R-R, R-S, and R-L exhibits the same frequency and grain size dependence as observed in the scattering of bulk waves in the Rayleigh regime. The R-L attenuation is negligible compared to the other two types of attenuation. Meanwhile, for a given material, the relative contributions from R-R and R-S attenuation to total scattering attenuation of Rayleigh waves remain unchanged, regardless of changes in frequency or grain size. Crystalline symmetry affects the relative contributions of the three types of wave mode conversions to the total scattering attenuation. Moreover, it plays a more critical role in determining scattering attenuation than the anisotropy index. Quantitative agreement is observed between the theoretical model and the existing attenuation model proposed by Ryzy et al. [AIP Adv. 8, 125019 (2010)] with only a relative error of 3.9% and 5.4% for aluminum (cubic symmetry) and copper sulfate pentahydrate (triclinic symmetry), respectively, within the applicable range of the theoretical model. However, the theoretical model is limited in applicability within stochastic and geometric regimes due to the constraints of the zero-order Born approximation. The proposed method and the obtained findings contribute to the understanding of Rayleigh wave propagation along the 3D polycrystalline surface and provide a basis for advancing the second-order Born approximation toward application in the stochastic regime.

任意对称三维多晶体中瑞利波的弱散射衰减模型。
本文提出了瑞利波在具有单相、无织构、等轴晶粒和任意对称性的三维半无限多晶介质中沿无应力平面传播的散射衰减的理论模型。该模型可以解释瑞利波散射成瑞利波和体波的行为,即可以分别详细计算瑞利-瑞利(R-R)、瑞利-剪切(R-S)和瑞利-纵波(R-L)衰减。数值结果表明,R-R、R-S和R-L的衰减表现出与瑞利区体波散射相同的频率和粒度依赖性。与其他两种衰减相比,R-L衰减可以忽略不计。同时,对于给定的材料,无论频率或粒度的变化如何,R-R和R-S衰减对瑞利波总散射衰减的相对贡献保持不变。晶体对称性影响三种波模转换对总散射衰减的相对贡献。此外,它在确定散射衰减方面比各向异性指数起着更关键的作用。理论模型与Ryzy等[AIP Adv. 8, 125019(2010)]提出的现有衰减模型定量一致,铝(立方对称)和五水硫酸铜(三斜对称)在理论模型适用范围内的相对误差分别为3.9%和5.4%。然而,由于零阶玻恩近似的限制,理论模型在随机和几何条件下的适用性受到限制。所提出的方法和得到的结果有助于理解瑞利波沿三维多晶表面的传播,并为将二阶玻恩近似推进到随机环境中的应用提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.60
自引率
16.70%
发文量
1433
审稿时长
4.7 months
期刊介绍: Since 1929 The Journal of the Acoustical Society of America has been the leading source of theoretical and experimental research results in the broad interdisciplinary study of sound. Subject coverage includes: linear and nonlinear acoustics; aeroacoustics, underwater sound and acoustical oceanography; ultrasonics and quantum acoustics; architectural and structural acoustics and vibration; speech, music and noise; psychology and physiology of hearing; engineering acoustics, transduction; bioacoustics, animal bioacoustics.
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