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首页> 外文期刊>Arabian journal of geosciences >Slope reliability analysis using length-based representative slip surfaces
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Slope reliability analysis using length-based representative slip surfaces

机译:使用基于长度的代表性滑动面进行边坡可靠度分析

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摘要

This paper develops an empirical approach to slope reliability considering 2D spatial variability of soil properties with length-based representative slip surfaces. The correlation coefficient between factors of safety for two slip surfaces is analogous to that between two slip surfaces which is quantified based on the lengths within different elements of the slip surface. A large number of potential slip surfaces are categorized into separate slip surface groups within each of which the correlation coefficient between any two slip surfaces is higher than the threshold value. A slip surface with the minimum factor of safety is considered to be the representative slip surface for each of slip surface groups. The factor of safety is minimized among all the representative slip surfaces, and the minimum one is regarded as the output for each set of random samples generated by Monte Carlo simulation (MCS). The methodology is validated through comparison with other methods. It is found that slope failure probability, p (f), increases as the scale of fluctuation, lambda (y) (in vertical direction), and lambda (x) (in horizontal direction) increase. The effect of non-circular failure mechanism was studied at different lambda (x) and lambda (y) values. Significant larger failure probabilities are provided with non-circular failure mechanism than with circular failure mechanism. For 2D spatial variability case, two orders of magnitude larger failure probability is noticed.
机译:本文提出了一种基于边长的代表性滑移面考虑土属性二维空间变异性的边坡可靠度经验方法。两个滑动面的安全系数之间的相关系数类似于两个滑动面之间的相关系数,该系数基于滑动面的不同元素内的长度进行量化。大量潜在的滑动表面被分类为单独的滑动表面组,在每个滑动表面组中,任意两个滑动表面之间的相关系数都高于阈值。安全系数最小的滑动面被认为是每个滑动面组的代表滑动面。在所有代表性滑移面中,安全系数被最小化,最小的滑移被视为通过蒙特卡洛模拟(MCS)生成的每组随机样本的输出。通过与其他方法进行比较来验证该方法。可以发现,边坡破坏概率p(f)随着波动量级,λ(y)(垂直方向)和λ(x)(水平方向)的增大而增大。在不同的λ(x)和λ(y)值下研究了非圆形失效机理的影响。与非圆形故障机制相比,非圆形故障机制具有更大的故障概率。对于2D空间变异性情况,注意到了两个数量级的更大失效概率。

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