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Numerical modelling of entrainment/deposition in rock and debris-avalanches

机译:岩石和碎屑崩塌中夹带/沉积的数值模拟

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摘要

Rock and debris avalanches, as well as debris flows, are characterized by peculiar behaviour influenced by geometry of the initial failure surface, topography, involved materials involved and water content. During their motion rock avalanches can entrain large volumes of sediments both in a dry and in a saturated state. Entrained dry material has generally the consequence to reduce the total landslide runout, whereas entrainment of almost saturated material can have more complex consequences. We use a finite element code to simulate the motion of a moving landslide mass on materials with different properties and along very sharp topographies. Erosion and deposition can be modelled as well as interaction with obstacles of different characteristics. We present two examples of the modelling problems and capabilities. We simulated the runout of a rock avalanche on a ground formed by alluvial material under dry and saturated conditions. This material can be entrained and plowed by the impacting and running rock avalanche material. Sensitivity of the erosion and transport mechanisms has been analysed by performing different analyses. The simulated case study is the 6*10~5 m~3 Arvel rock-avalanche (1922, Switzerland) for which a reliable set of pre- and post-failure observations is available. Final geometry, mass redistribution, velocities and runup are used to validate the model capabilities and study the effects of different material properties.
机译:岩石和碎屑雪崩以及泥石流的特征是受初始破坏面的几何形状,地形,所涉及的材料和含水量影响的特殊行为。在运动过程中,岩石雪崩会在干燥和饱和状态下夹带大量沉积物。夹带的干燥材料通常具有减少总滑坡跳动的后果,而夹带几乎饱和的材料可能具有更复杂的后果。我们使用有限元代码来模拟移动的滑坡体在具有不同特性的材料上以及沿非常陡峭的地形的运动。可以对侵蚀和沉积以及与不同特征的障碍物的相互作用进行建模。我们提供了两个建模问题和功能的示例。我们在干燥和饱和条件下模拟了由冲积材料形成的地面上的雪崩的跳动。这种材料可以被撞击和流动的岩石雪崩材料夹带和耕作。侵蚀和运输机制的敏感性已通过执行不同的分析进行了分析。模拟的案例研究是6 * 10〜5 m〜3的Arvel岩石雪崩(1922,瑞士),可提供一组可靠的失效前后的观测资料。最终的几何形状,质量重新分布,速度和运行时间用于验证模型功能并研究不同材料特性的影响。

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