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首页> 外文期刊>International journal of geomechanics >Antislip Stability Analysis of Gravity Retaining Wall by Probabilistic Approach
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Antislip Stability Analysis of Gravity Retaining Wall by Probabilistic Approach

机译:重力式挡土墙的防滑稳定性分析

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摘要

In this paper, the antislip stability assessment of a gravity retaining wall is analyzed by considering the spatial variability of soils based on the theory of random fields. The effects of spatial correlation lengths of the soil/wall base friction coefficient and cohesion on the antislip safety factor of a gravity retaining wall were investigated. The numerical results indicated that the effects of spatial correlation length of the soil/wall base friction coefficient on the probability of failure (P-f) were greater than those of cohesion on the probability of slip failure. Moreover, when comparing different levels of failure probability, the antislip factor of safety corresponded to different constants when values of normalized spatial correlation length were relatively small. In other words, the antislip factor of safety increases with a decreasing failure probability, whereas the antislip factor of safety is essentially equal to 1 when the values of normalized spatial correlation length are relatively large. In addition, the numerical results obtained using the proposed method were in good agreement with those obtained using Monte Carlo simulation.
机译:本文基于随机场理论,通过考虑土壤的空间变异性来分析重力挡土墙的防滑稳定性评估。研究了土/墙基础摩擦系数和内聚力的空间相关长度对重力式挡土墙防滑安全系数的影响。数值结果表明,土/墙基础摩擦系数的空间相关长度对滑动概率的影响大于内聚力对滑动破坏概率的影响。此外,当比较不同级别的失败概率时,当标准化空间相关长度的值相对较小时,安全性的防滑系数对应于不同的常数。换句话说,安全性的防滑系数随着故障概率的降低而增加,而当标准化的空间相关长度的值相对较大时,安全性的防滑系数实质上等于1。此外,使用该方法获得的数值结果与使用蒙特卡洛模拟获得的数值结果非常吻合。

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