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High-mobility of unconstrained rock avalanches: Numerical simulations of a laboratory experiment and an Argentinian event

机译:高流动性的无限制雪崩:实验室实验和阿根廷事件的数值模拟

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Rock avalanches are one of the most hazardous landslide phenomena. They involve huge, extremely rapid flowing masses, carrying a strong power of destruction and reaching high mobility. The present article shows results of back-analysis of the Potrero de Leyes case in the Argentinian Andes. This rock avalanche has travelled on an unconstrained topography showing a great mobility, even without any channelizing effects. Simulations are carried out with VolcFlow, a continuum model, first on an unconstrained granular flow experiment and then on Potrero de Leyes. Results show that purely frictional model works well for the experiment, but that it can only reproduce the longitudinal runout in the field, and this provided that the basal friction coefficient used is close to the measured Fahrböschung. Here, since the rock avalanche starts as a coherent mass that disaggregates and shatters only during its propagation, lateral spreading is overestimated and only the use of a viscous rheology produces better results.
机译:岩石雪崩是最危险的滑坡现象之一。它们涉及巨大的,流动迅速的群众,具有强大的破坏力并具有很高的机动性。本文显示了阿根廷安第斯山脉Potrero de Leyes案的反分析结果。即使没有任何沟渠效应,此岩石雪崩仍在不受约束的地形上移动,显示出极大的流动性。首先使用无约束的颗粒流实验,然后在Potrero de Leyes上,使用连续模型VolcFlow进行仿真。结果表明,纯摩擦模型在实验中效果很好,但是它只能重现野外的纵向跳动,并且前提是所用的基础摩擦系数与实测法拉博雄相近。在这里,由于岩石雪崩始于一个相干的团块,仅在其传播过程中才分解和破碎,因此侧向扩展被高估了,只有使用粘性流变才能产生更好的结果。

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