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Large mobility of dry snow avalanches: insights from small-scale laboratory tests on granular avalanches of bidisperse materials

机译:干雪雪崩的大流动性:小规模实验室对双分散材料颗粒雪崩的见解

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摘要

This paper reports small-scale laboratory tests on granular avalanches of bidisperse materials made of fine particles and larger ones. These experiments were motivated by a recent study on the rheology of dense flowing snow which provided evidence for relevant similarities in flow behavior between bidisperse granular materials and dry cold snow [Rognon and others, J. Rheol., 52, 3 ([32])]. The mass proportion of fine particles in the initial binary mixture was systematically varied at constant initial released volume, and we measured the resulting flow depth, the avalanche front velocity and the final avalanche runout. In particular, we show that the avalanche mobility is largely increased, about 40% in our tests, when the mass proportion in fine particles reaches a critical value, around 0.25 in our tests. The avalanche deposit is shallow and lengthened for this critical mass proportion in fine particles. The experimental results are interpreted by the existence of different avalanche mobility regimes on the basis of a heuristic model previously reported in literature. Finally, we discuss their possible implications for the dynamics of full-scale dry snow avalanches.
机译:本文报道了由细颗粒和较大颗粒组成的双分散材料的颗粒雪崩的小型实验室测试。这些实验是受最近对稠密流动的雪的流变学研究的启发而进行的,该研究提供了双分散粒状材料与干燥冷雪之间的流动行为相关相似性的证据[Rognon等,J。Rheol。,52,3([32]) ]。初始二元混合物中细颗粒的质量比例在恒定的初始释放体积下系统地变化,我们测量了产生的水流深度,雪崩前沿速度和最终雪崩跳动。特别地,我们表明,当细颗粒中的质量比例达到临界值(在我们的测试中约为0.25)时,雪崩迁移率大大提高,在我们的测试中约为40%。对于此临界质量比,细颗粒中的雪崩沉积物很浅且很长。在先前文献中报道的启发式模型的基础上,通过不同雪崩迁移率机制的存在来解释实验结果。最后,我们讨论了它们对全尺寸干雪雪崩动力学的可能影响。

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