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Wave propagations through jointed rock masses and their effects on the stability of slopes

机译:波在节理岩体中的传播及其对边坡稳定性的影响

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Seismic behavior in rock slopes with discontinuities is largely governed by the geometrical distribution and mechanical properties of the discontinuities. Particularly, high and steep rock slopes, which are dominated by bedding and toppling discontinuity joints, are likely to collapse and cause serious damage to structures near the slopes. Because the composition of geological materials and discontinuities becomes more complex, and depending on the specifics of the ground motion caused by the earthquake, slope stability becomes very complicated under earthquake loadings. Special attention should be paid to the study of wave propagation phenomena in rock masses and their effects on the stability of rock mass slopes. This research first focuses on the analysis of the wave propagation phenomenon using numerical methods. The wave propagation characteristics in rock mass slopes with bedding and toppling discontinuity joints are assessed using two-dimensional, dynamic FEM analyses. An analytical result is obtained in the time domain and allows one to consider multiple wave reflections between joints. Next, a series of shaking table tests are conducted on a scaled model of a high and steep rock slope with bedding discontinuity joints. The shaking table tests are performed to evaluate the influence of wave propagation on the stability of the slope. These tests show that an amplification area will form at the top of the slope. When the amplitude of the input acceleration reaches a certain value, an area at the top of the slope completely collapses along a slide surface, which is simulated using Teflon tape in the experiments. (C) 2015 Elsevier B.V. All rights reserved.
机译:具有不连续性的岩质边坡的地震行为在很大程度上受不连续性的几何分布和力学性能支配。特别是,以顺层和倾倒不连续缝为主的高而陡峭的岩石斜坡很可能坍塌,并严重破坏斜坡附近的建筑物。由于地质材料和不连续面的组成变得更加复杂,并且取决于地震引起的地震动的特性,在地震荷载下,边坡稳定性变得非常复杂。应特别注意岩体中波传播现象及其对岩质边坡稳定性的影响。这项研究首先着重于利用数值方法分析波传播现象。使用二维动态有限元分析评估了具有顺层和倾覆不连续缝的岩质边坡中的波传播特性。可以在时域中获得分析结果,并且可以考虑关节之间的多次波反射。接下来,在具有顺层不连续缝的高陡岩石边坡的比例模型上进行了一系列振动台测试。进行振动台测试以评估波传播对斜坡稳定性的影响。这些测试表明,在斜率的顶部将形成一个放大区域。当输入加速度的幅度达到一定值时,斜坡顶部的区域会沿着滑动表面完全塌陷,这在实验中使用了特氟隆胶带进行了模拟。 (C)2015 Elsevier B.V.保留所有权利。

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