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Probabilistic Slope Stability Analyses: Effects of the Coefficient of Variation and the Cross-Correlation of Shear Strength Parameters

机译:概率坡度稳定性分析:变化系数的影响和剪切强度参数的互相关

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The assessment of the safety level of natural slopes, road cuts, embankments and levees require consideration of uncertainties and variability in material properties. In this study, for a number of slope geometries, including a real-life landslide case, probability of failure (PF) and the most critical failure surface are investigated with and without cross-correlation of shear strength properties. Slopes having different traditionally-defined factor of safety (FS) levels are studied. The uncertainty of soil properties are considered by different levels of coefficient of variation (COV). Limit equilibrium method is used for slope stability analyses and geotechnical material properties are considered to have normal statistical distribution. The results of this analyses show that the PF and the critical failure surface is significantly influenced by the COV level, the consideration of cross correlation of shear strength parameters, and by the traditional FS level of the slopes. The inverse relation between FS and PF is demonstrated to be nonlinear and the COV level has significant effect on this relationship. Results indicate that the deterministic slope stability analyses resulting in a single FS value is no longer sufficient to evaluate the safety of a slope in geotechnical engineering, and that the deterministic critical failure surface with minimum FS value is not always the most critical slip surface. The results presented in this study could be useful for further understanding of probabilistic slope stability and the effects of soil variability/uncertainty, with the aim of better geotechnical risk evaluation and communication.
机译:评估自然斜坡,道路切割,堤防和堤坝的安全水平需要考虑材料特性的不确定性和可变性。在本研究中,对于多个斜坡几何形状,包括实际寿命壳体,失败的概率(PF)和最关键的故障表面并没有剪切强度特性的互相关性。研究了具有不同传统定义的安全系数(FS)水平的斜坡。土壤性质的不确定性被不同水平的变异系数(COV)考虑。限制平衡方法用于边坡稳定性分析,并且岩土材料性质被认为具有正常的统计分布。该分析结果表明,PF和临界失效表面受COV水平的显着影响,考虑剪切强度参数的交叉相关性,以及通过斜坡的传统FS水平。 FS和PF之间的反向关系被证明是非线性的,并且COV水平对这种关系具有显着影响。结果表明,确定性的斜率稳定性分析不再足以评估岩土工程中的斜率的安全性,并且具有最小FS值的确定性临界失败表面并不总是最关键的滑动表面。本研究中提出的结果可用于进一步了解概率的坡度稳定性和土壤变异性/不确定性的影响,以更好的岩土风险评估和沟通。

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