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An Improved Strength Reduction-Based Slope Stability Analysis

机译:基于强度的基于倾斜斜率分析

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摘要

Slope uncertainty predominantly originates from the imperfect analysis model and the inaccuracy and imprecision of the observations. The strength reduction method (SRM) is widely used to attain the safety factor (SF) of the slopes, which is similar to interpretation of the limit state (LS). In this paper, the spectral element method (SEM), using an elasto-plastic Mohr⁻Coulomb failure criterion, is employed to project the plausible LS of the soil slopes. An iterative SRM search method is proposed to evaluate the SF of the slopes regardless of the LS interpretation. The proposed SRM paradigm encompasses the design trigger to trace the uncertain parameters in decision-making. This method is applied to three numerical examples: (1) a homogeneous dry slope, (2) a dry slope with a weak layer, and (3) a partially-wet slope with a weak layer. It is shown that for the case study examples, the proposed SRM reasonably converges to the required precision. Results further are compared and contrasted with some of the conventional and standard techniques in slope stability. This hybrid procedure paves the road for fast and safe stability analysis of man-made and natural slopes.
机译:斜率不确定性主要来自不完美的分析模型和观察的不准确性和不准确性和不准确性。强度还原方法(SRM)广泛用于达到斜坡的安全系数(SF),其类似于对极限状态(LS)的解释。本文采用弹性塑料Mohrcoulomb故障标准的光谱元件方法(SEM)用于将合理的土壤斜坡的LS投影。建议迭代SRM搜索方法来评估斜率的SF,而不管LS解释如何。所提出的SRM范例包括设计触发器来跟踪决策中不确定的参数。该方法应用于三个数值示例:(1)均匀的干斜坡,(2)具有弱层的干斜率,和(3)具有弱层的部分湿坡。结果表明,对于案例研究示例,所提出的SRM合理地收敛于所需的精度。将结果进一步比较和与斜坡稳定性中的一些常规和标准技术对比。这种混合动力程序铺设了人造和天然斜坡的快速安全稳定性的道路。

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