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Influence of thermomechanics in the catastrophic collapse of planar landslides

机译:热力学对平面滑坡灾害性崩塌的影响

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Frictional heating has long been considered a mechanism responsible for the high velocities and long run-out of some large-scale landslides. In this work a landslide model is presented, applicable to large-scale planar landslides occurring in a coherent fashion. The model accounts for temperature rise in the slip zone due to the heat produced by friction, leading to water expansion, thermoplastic collapse of the soil skeleton, and subsequently to an increase of pore-water pressure. The landslide model, comprising equations that describe heat and pore pressure diffusion and the dynamics of the moving mass, is used to analyse the evolution of the Jiufengershan planar landslide as an example. Further, its parameter space is systematically and efficiently explored using a Taguchi parametric analysis in an attempt to quantify dominant parameters. It is shown that the process of sliding is dominated by the softening properties of the material, as expected, but also by the permeability of the slip zone and the thickness of the sliding mass. It is worth noting that the latter two parameters do not enter traditional stability analyses of uniform slopes.
机译:长期以来,摩擦加热一直被认为是某些大规模滑坡的高速发展和长期失控的一种机制。在这项工作中,提出了一种滑坡模型,适用于以连贯方式发生的大规模平面滑坡。该模型解释了由于摩擦产生的热量导致滑移区的温度升高,导致水膨胀,土壤骨架的热塑性塌陷,以及随后的孔隙水压力增加。滑坡模型包括描述热和孔隙压力扩散以及运动质量动力学的方程式,以九峰二山平面滑坡的演化为例。此外,使用田口参数分析系统地和有效地探索其参数空间,以试图量化主要参数。结果表明,滑动过程主要取决于材料的软化特性,正如所预期的那样,还取决于滑动区的渗透性和滑动块的厚度。值得注意的是,后两个参数没有进入传统的均布边坡稳定性分析。

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