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Numerical simulation of transformation of an obliquely incident shear wave at rock joint

机译:岩石节理斜入射剪切波转换的数值模拟

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An incident energy wave that propagates across discontinuities in rock mass seldom strikes normal to the joint and an oblique incidence leads to transformation of waves. An obliquely incident vertical shear wave will generate a compression wave as well as a vertical shear wave. Similar transformation happens to P wave also during its transmission. The transformation of an obliquely incident shear wave is numerically simulated with the help of previously validated discrete element model. A parametric study on influence of joint shear stiffness on transformation of shear waves is performed for various angles of incidence. It is observed that joint shear stiffness plays an important role in determining wave velocities and amplitudes of transmitted shear waves across various incident angles, but is insignificant for generated P waves. The dependency of wave velocities and amplitudes of waves on incident wave angles is also discussed in this paper.
机译:沿岩体的不连续面传播的入射能量波很少会垂直于节理撞击,而斜入射会导致波的转换。倾斜入射的垂直切变波将产生压缩波以及垂直切变波。 P波在传输过程中也会发生类似的变化。在先前验证的离散元模型的帮助下,对斜入射剪切波的转换进行了数值模拟。对不同入射角进行了联合剪切刚度对剪切波变换影响的参数研究。可以看出,联合剪切刚度在确定波速和跨不同入射角的透射切变波的振幅中起着重要作用,但对于产生的P波却无关紧要。本文还讨论了波速和波幅对入射波角的依赖性。

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