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Reliability analysis of jointed rock slope considering uncertainty in peak and residual strength parameters

机译:考虑峰强度和残余强度参数不确定性的节理岩质边坡可靠度分析

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Stability analysis of rock slopes is a complex problem because of uncertainties involved in the rock mass properties. The probabilistic approach is a rational way to deal with these uncertainties. This article investigates the stability of a rock slope by deterministic and probabilistic approaches by considering uncertainty in peak and residual strength parameters and strength-drop in stress-strain behavior of the rock mass. A Geological Strength Index (GSI) based on a quantitative approach was used to estimate the statistical parameters of peak and residual strength parameters. Reliability index of the slope was then estimated using Hong's Point Estimate Method coupled with the finite element method. The approach is demonstrated using an important case study of a Himalayan rock slope supporting the piers of the world's highest railway bridge. It was observed that the factor of safety and reliability index for the slope was highly sensitive to residual strength parameters, and; hence, ignoring strength-drop from the rock mass behavior and uncertainty in residual strength parameters can overestimate the factor of safety and the reliability index of rock slopes. A parametric study is carried out to evaluate the influence of the coefficient of variation of uniaxial compressive strength of intact rock, the Hoek-Brown strength parameter of intact rock, roughness and alteration parameters of the joints on the probability of failure and the reliability index. The approach is verified by comparing the estimated displacements along the slope with in-situ measured displacements observed during field monitoring over the years. The approach used can be extended to the rock slopes or rock slides where high displacements in the slopes are expected due to triggering forces like seismic forces, excavation or structural loads.
机译:由于岩体性质的不确定性,岩质边坡的稳定性分析是一个复杂的问题。概率方法是处理这些不确定性的合理方法。本文通过确定性和概率性方法,通过考虑岩体的峰值和残余强度参数的不确定性以及岩体应力-应变特性的强度下降,来研究岩质边坡的稳定性。基于定量方法的地质强度指数(GSI)用于估计峰强度参数和残余强度参数的统计参数。然后使用洪氏点估计法和有限元法估计边坡的可靠性指标。通过对支持世界最高铁路桥墩的喜马拉雅岩质边坡进行的重要案例研究证明了该方法。据观察,该边坡的安全性和可靠性指标对残余强度参数高度敏感,并且;因此,忽略岩体行为的强度下降和残余强度参数的不确定性可能会高估安全系数和岩质边坡的可靠性指标。进行了参数研究,评估了完整岩石的单轴抗压强度变化系数,完整岩石的Hoek-Brown强度参数,节理的粗糙度和变化参数对失效概率和可靠性指标的影响。通过将沿斜坡的估计位移与多年现场监测期间观察到的现场测量位移进行比较,验证了该方法的有效性。所使用的方法可以扩展到由于诸如地震力,开挖或结构载荷之类的触发力而期望在斜坡上产生高位移的岩石斜坡或滑坡。

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