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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Linearized approximations for phase velocities of elastic waves in weakly anisotropic media
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Linearized approximations for phase velocities of elastic waves in weakly anisotropic media

机译:弱各向异性介质中弹性波相速度的线性近似

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摘要

This paper focuses on the development of linearized formulae for the phase velocities of quasi-longitudinal (QL) and quasi-transverse (QT) waves in weakly anisotropic media. The formulae for quasi-transverse waves derived from first-order perturbation theory possess the property of rotational invariance in a plane perpendicular to the wave normal. Based on this property, a planar coordinate system, describing the possible polarization of the two degenerate transverse waves, can be conveniently selected. The relationships between the first-order formulae and other related existing approximate expressions are clarified. For a symmetry plane of orthorhombic media, we extended Gassmann's formula for the QL-wave phase velocity in transversely isotropic media to QL and QT waves. Three forms of phase velocity expressions are discussed. For non-symmetry planes of weakly orthorhombic media, we propose a unified form for the QL-wave phase velocity and in a very simple way derive the linearized Thomsen- and Gassmannn-like formulae. Furthermore we suggest QT-wave phase velocity expressions which are linear functions of the elastic constants assuming that wave propagation has a slight deviation from a symmetry plane of orthorhombic media. Finally, numerical results in a symmetry plane show that the set of first-order approximate formulae performs best for weakly anisotropic materials. [References: 27]
机译:本文重点研究弱各向异性介质中准纵向(QL)和准横向(QT)波的相速度线性化公式。由一阶扰动理论推导的准横波公式具有垂直于波法线的平面中的旋转不变性的特性。基于此特性,可以方便地选择一个平面坐标系,该坐标系描述了两个简并横波的可能极化。阐明了一阶公式与其他相关的现有近似表达式之间的关系。对于正交各向异性介质的对称平面,我们将横观各向同性介质中QL波相速度的Gassmann公式扩展为QL和QT波。讨论了三种形式的相速度表达式。对于弱正交各向异性介质的非对称平面,我们提出了QL波相速度的统一形式,并以非常简单的方式推导了线性化的Thomsen和Gassmannn公式。此外,我们假设QT波相速度表达式是弹性常数的线性函数,假设波传播与正交斜介质的对称面略有偏差。最后,在对称平面上的数值结果表明,一阶近似公式对于弱各向异性材料的效果最好。 [参考:27]

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