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Seismic and static 3D stability of two-stage rock slope based on Hoek-Brown failure criterion

机译:基于Hoek-Brown破坏准则的两段岩质边坡的地震和静态3D稳定性

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摘要

Two-stage slope is beneficial to improve slope stability in comparison with single-stage slope. Based on nonlinear Hoek-Brown criterion, a three-dimensional failure mechanism is employed to estimate the stability of two-stage rock slope, with the effect of seismic inertia force being taken into account. A generalized tangential technique is used to formulate the stability factor problem as a classical optimization problem corresponding to the dissipated energy. The upper-bound solutions are obtained by minimizing the objective function with respect to the location of sliding body center and the location of tangency point. The seismic inertia force is considered and incorporated into the objective function. In comparison with previously published solutions using the linear Mohr-Coulomb criterion, the validity of the present solutions is shown. The analytical expressions for two-stage slope are derived to estimate the seismic stability of slopes. Numerical results for different types of rocks are presented for practical use in engineering, and the effects of different parameters on slope stability are discussed.
机译:与单级边坡相比,两级边坡有利于提高边坡稳定性。基于非线性Hoek-Brown准则,考虑了地震惯性力的影响,采用三维破坏机制估计了两段岩质边坡的稳定性。使用广义切线技术将稳定性因子问题公式化为对应于耗散能量的经典优化问题。通过最小化关于滑动体中心的位置和切点的位置的目标函数来获得上限解。考虑了地震惯性力并将其纳入目标函数。与先前使用线性Mohr-Coulomb准则发布的解决方案相比,显示了本解决方案的有效性。推导了两阶段边坡的解析表达式,以估算边坡的地震稳定性。给出了不同类型岩石的数值结果,以供工程实际使用,并讨论了不同参数对边坡稳定性的影响。

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