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Mathematical Modeling and Analysis of Torsional Surface Waves in a Transverse Isotropic Elastic Solid Semi-Infinite Medium with Varying Rigidity and Density under a Rigid Layer

机译:刚性层下刚性和密度变化的横观各向同性弹性固体半无限介质中扭转表面波的数学建模与分析

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In this paper, mathematical modeling of the propagation of torsional surface waves in a transverse isotropic elastic medium with varying rigidity and density under a rigid layer has been considered. The equation of motion has been formulated in the elastic medium using suitable boundary conditions. The frequency equation containing Whittaker’s function for phase velocity due to torsional surface waves has been derived. The effect of rigid layer in the propagation of torsional surface waves in a transverse isotropic elastic medium with varying rigidity and density has been discussed. The numerical results have been shown graphically. It is observed that the influence of transverse and longitudinal rigidity and density of the medium have a remarkable effect on the propagation of the torsional surface waves. Frequency equations have also been derived for some particular cases, which are in perfect agreement with some standard results.
机译:在本文中,已经考虑了在刚性层下具有不同刚性和密度的横向各向同性弹性介质中扭转表面波传播的数学模型。运动方程已在弹性介质中使用合适的边界条件公式化。推导了包含惠特克函数的频率方程,该函数包含由扭转表面波引起的相速度。讨论了刚性层在具有不同刚度和密度的横向各向同性弹性介质中扭转表面波的传播中的作用。数值结果已以图形方式显示。可以看出,介质的横向和纵向刚度和密度的影响对扭转表面波的传播有显着影响。还针对某些特殊情况推导了频率方程,与某些标准结果完全吻合。

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