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Propagation of Torsional surface waves in an inhomogeneous anisotropic fluid saturated porous layered half space under initial stress with varying properties

机译:具有不同性质的初始应力下非均匀各向异性流体饱和多孔层状半空间中扭转表面波的传播

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We study the behavior of torsional surface waves when they propagate through inhomogeneous fluid saturated porous layer over a homogeneous porous half space. The layer has three types of inhomogeneity, viz; linear, quadratic and exponential, varies with depth as rigidity, density and initial stress. We assume both media under compressive initial stresses and the analysis is based on the Blot's theory. The effect of inhomogeneity of the layer in the propagation of torsional surface waves have been studied. The dispersion equations are derived for each case and solved by an iterative method (Newton-Raphson method). It is observed from the numerical calculation that the presence of initial stress and inhomogeneity of the medium affect significantly to the phase velocity of torsional surface waves. Also, propagation of torsional surface waves depend upon the medium in which they propagate as torsional surface waves propagate fastly in presence of elastic half space in comparison to porous half space.
机译:我们研究了扭转表面波在均匀多孔半空间上通过不均匀流体饱和多孔层传播时的行为。该层具有三种不均匀性,即:线性,二次和指数随深度,刚性,密度和初始应力而变化。我们假设两种介质都处于压缩初始应力下,并且分析是基于Blot理论进行的。已经研究了层的不均匀性在扭转表面波的传播中的作用。针对每种情况导出色散方程,并通过迭代方法(牛顿-拉夫森法)求解。从数值计算中可以看出,初始应力的存在和介质的不均匀性对扭转表面波的相速度影响很大。而且,扭转表面波的传播取决于它们在其中传播的介质,因为与多孔半空间相比,在弹性半空间存在的情况下,扭转表面波快速传播。

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