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A Multiple Response-Surface based Subset Simulation for Slope Reliability Analysis in Spatially Variable Soils

机译:基于多响应表面的斜率可靠性分析子集仿真

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This paper proposes a multiple response-surface based Subset simulation approach for slope reliability analysis at low-probability levels in spatially variable soils.An example of reliability analysis of the Congress Street cut slope is presented to illustrate the effectiveness of the proposed method.The results indicate that the proposed approach possesses the following advantages: (1) it can properly evaluate the slope reliability at low-probability levels (e.g., pf <10-6) in spatially variable soils; (2) greatly improve the computational efficiency in parametric sensitivity analysis, and provide an effective way to investigate effects of statistics (e.g., probability distribution, scale of fluctuation) on the slope reliability.Additionally, the probabilities of slope failure associated with undrained shear strengths following the commonly-used Gaussian and lognormal distributions differ considerably.
机译:本文提出了一种多响应表面基于倾斜表面的子集仿真方法,用于空间可变污水中低概率水平处的坡度可靠性分析。提出了国会街道切割斜率的可靠性分析的示例,以说明所提出的方法的有效性。结果表明所提出的方法具有以下优点:(1)它可以在空间可变土壤中正确评估低概率水平(例如,PF <10-6)的坡度可靠性; (2)大大提高了参数敏感性分析中的计算效率,并提供了研究统计(例如,概率分布,波动规模)对坡度可靠性的影响的有效方法。加法,与未润湿的剪切强度相关的斜率故障的概率遵循普通使用的高斯和逻辑分布差异很大。

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