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Identification of mechanisms for landslide type initiation of debris flows

机译:确定泥石流的滑坡类型引发机制

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The modelling of debris flow initiation in slopes is addressed in this paper. First, possible factors governing debris flow initiation are established. Then, a coupled hydro-mechanical model for deformable porous media with two pore fluids that is used to assess the problem of the debris flow initiation in slopes is briefly outlined. Various ways to identify failure and to approach the transition of the failed mass into a debris flow are discussed in the framework of small strain theory and elasto-plastic behaviour. A parametric study was carried out to evaluate the relative importance of the most commonly cited parameters that are assumed to influence debris flow initiation. It was found that the slope angle is of minor importance in the development of slope instability under loading due to internal water supply. Transient behaviour was found to be decisive, and some critical combinations of water supply over time yielded situations that were likely to encourage the onset of debris flow. The significant role of permeability as a function of the degree of saturation in relation to the water supply is demonstrated. The proposed three-phase model is shown to be an adequate and promising way to address debris flow initiation.
机译:本文讨论了边坡中泥石流启动的建模问题。首先,建立控制泥石流启动的可能因素。然后,简要概述了具有两种孔隙流体的可变形多孔介质的耦合水力力学模型,该模型用于评估边坡中泥石流引发的问题。在小应变理论和弹塑性行为的框架下,讨论了识别失效和接近失效质量转变为泥石流的各种方法。进行了一项参数研究,以评估最常引用的参数的相对重要性,这些参数被认为会影响泥石流的产生。已经发现,由于内部供水,在负载下边坡不稳定性的发展中,边坡角的重要性不大。人们发现瞬态行为是决定性的,随着时间的流逝,某些关键的供水组合会产生可能促使泥石流爆发的情况。证明了渗透率作为相对于供水的饱和度的函数的重要作用。所提出的三相模型显示出是解决泥石流引发的适当且有希望的方法。

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