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Three-dimensional numerical analysis for rock slope stability using shear strength reduction method

机译:剪切强度折减法对岩质边坡稳定性进行三维数值分析

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摘要

Existing numerical modeling of three-dimensional (3D) slopes is performed mainly by using the shear strength reduction (SSR) technique based on the linear Mohr–Coulomb (MC) criterion, whereas the nonlinear failure criterion for rock slope stability is seldom used in slope modeling. However, it is known that rock mass strength is a nonlinear stress function and that, therefore, the linear MC criterion does not agree with the rock mass failure envelope very well. In this research, a nonlinear SSR technique is proposed that can use the Hoek–Brown (HB) criterion to represent the nonlinear behavior of a rock mass in the FLAC~(3D) program to analyze 3D slope stability. Extensive case studies are carried out to investigate the influence of the convergence criterion and boundary conditions on the 3D slope modeling. Results show that the convergence criterion used in the 3D model plays an important role, not only in terms of calculation of the factor of safety (FOS), but also in terms of the shape of the failure surface. The case studies also demonstrate that the value of the FOS for a given slope will be significantly influenced by the boundary condition when the slope angle is less than 50°.
机译:现有的三维(3D)边坡数值模拟主要是通过基于线性Mohr-Coulomb(MC)准则的抗剪强度折减(SSR)技术进行的,而岩石边坡稳定性的非线性破坏准则则很少使用造型。但是,已知岩体强度是非线性应力函数,因此,线性MC准则与岩体破坏包络线不太吻合。在这项研究中,提出了一种非线性SSR技术,该技术可以使用Hoek-Brown(HB)准则来表示FLAC〜(3D)程序中岩体的非线性行为,以分析3D边坡稳定性。进行了广泛的案例研究,以研究收敛准则和边界条件对3D坡度建模的影响。结果表明,在3D模型中使用的收敛准则不仅在安全系数(FOS)的计算方面,而且在破坏表面的形状方面都发挥着重要作用。案例研究还表明,当坡度角小于50°时,边界条件会显着影响给定坡度的FOS值。

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