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Probabilistic stability analysis of rainfall-induced landslides considering spatial variability of permeability

机译:考虑渗透率空间变异性的降雨诱发滑坡概率稳定性分析

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摘要

Many regions around the world are vulnerable to rainfall-induced landslides. A variety of methods have been proposed for revealing the mechanism of landslide initiation. Current analysis methods, however, do not consider the effects of non-homogeneous soil profiles and variable hydraulic responses on rainfall-induced slope failures. In Korea, where the depth of weathering is very shallow, many slope failures occur in the layer of weathered residual soil that overlays the bedrock. These failures are characterized by shallow failure surfaces located near the interface between the weathered soil and the underlying bedrock. In this study, probabilistic stability analyses were conducted for a weathered residual soil slope with shallow impermeable bedrock to study the failure mechanism of rainfall-related landslides. A series of seepage and stability analyses of an infinite slope based on one-dimensional random fields were performed to study the effects of uncertainty due to the spatial heterogeneity of hydraulic conductivity on the failure of unsaturated slopes due to rainfall infiltration. The results showed that a probabilistic framework can be used to efficiently consider various failure patterns caused by spatial variability of hydraulic conductivity in rainfall infiltration assessment for a shallow infinite slope.
机译:世界上许多地区都容易受到降雨诱发的滑坡的影响。已经提出了多种方法来揭示滑坡引发的机理。但是,当前的分析方法没有考虑非均质土壤剖面和可变水力响应对降雨引起的边坡破坏的影响。在韩国,风化的深度很浅,在覆盖基岩的风化残留土壤层中发生了许多斜坡破坏。这些破坏的特征是浅破坏面位于风化土壤和下面的基岩之间的界面附近。在这项研究中,对具有浅层不可渗透基岩的风化残余土壤边坡进行了概率稳定性分析,以研究与降雨有关的滑坡的破坏机理。基于一维随机场,对无限边坡进行了一系列的渗流和稳定性分析,研究了水力传导率空间非均质性引起的不确定性对降雨入渗对非饱和边坡破坏的影响。结果表明,一个概率框架可以用来有效地考虑由水力传导率的空间变异性引起的各种失效模式,这些降雨模式适用于无限深浅坡的降雨入渗评估。

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