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Propagation of transient out-of-plane shear waves in viscoelastic layered media

机译:瞬态平面外剪切波在粘弹性层状介质中的传播

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摘要

Propagation of two-dimensional transient out-of-plane shear waves in multilayered viscoelastic media is investigated. The multilayered medium consists of N different isotropic, homogeneous and linearly viscoelastic layers with more than one discrete relaxation time. The top surface of the layered medium is subjected to dynamic out-of-plane shear tractions; whereas, the lower surface is free or fixed. A numerical technique is employed to obtain the solution, which combines the Fourier transform with the method of characteristics. The numerical results are displayed in curves denoting the variations of the shear stresses with time at different locations. These curves reveal clearly the scattering effects caused by the reflections and refractions of inclined waves at the boundaries and at the interfaces of the layers. The curves also display the effects of viscous damping in the wave profiles. By suitably adjusting the material constants, the curves for the case of elastic layers are also obtained as a special case. The curves further show that the numerical technique applied in this study is capable of predicting the sharp variations at the wave fronts.
机译:研究了二维瞬态面外剪切波在多层粘弹性介质中的传播。多层介质由N个不同的各向同性,均质和线性粘弹性层组成,并具有一个以上的离散弛豫时间。层状介质的顶面承受动态的平面外剪切力;下表面是自由的或固定的。采用数值技术来获得解决方案,该解决方案将傅里叶变换与特征方法相结合。数值结果显示在曲线中,表示在不同位置剪切应力随时间的变化。这些曲线清楚地揭示了由倾斜波在层的边界和界面处的反射和折射引起的散射效应。曲线还显示了波浪轮廓中的粘性阻尼效应。通过适当地调节材料常数,作为弹性层的情况的曲线也作为特殊情况而获得。曲线进一步表明,在这项研究中应用的数值技术能够预测波前的急剧变化。

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