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Dynamics of glide avalanches and snow gliding

机译:滑行雪崩和滑雪的动力学

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In recent years, due to warmer snow cover, there has been a significant increase in the number of cases of damage caused by gliding snowpacks and glide avalanches. On most occasions, these have been full-depth, wet-snow avalanches, and this led some people to express their surprise: how could low-speed masses of wet snow exert sufficiently high levels of pressure to severely damage engineered structures designed to carry heavy loads? This paper reviews the current state of knowledge about the formation of glide avalanches and the forces exerted on simple structures by a gliding mass of snow. One particular difficulty in reviewing the existing literature on gliding snow and on force calculations is that much of the theoretical and phenomenological analyses were presented in technical reports that date back to the earliest developments of avalanche science in the 1930s. Returning to these primary sources and attempting to put them into a contemporary perspective are vital. A detailed, modern analysis of them shows that the order of magnitude of the forces exerted by gliding snow can indeed be estimated correctly. The precise physical mechanisms remain elusive, however. We comment on the existing approaches in light of the most recent findings about related topics, including the physics of granular and plastic flows, and from field surveys of snow and avalanches (as well as glaciers and debris flows). Methods of calculating the forces exerted by glide avalanches are compared quantitatively on the basis of two case studies. This paper shows that if snow depth and density are known, then certain approaches can indeed predict the forces exerted on simple obstacles in the event of glide avalanches or gliding snow cover.
机译:近年来,由于积雪变暖,滑行积雪和滑行雪崩造成的损坏案例数量大大增加。在大多数情况下,这些都是全深度的湿雪崩,这使一些人感到惊讶:低速的湿雪团如何施加足够高的压力以严重损坏旨在承载重物的工程结构负载?本文回顾了有关滑行雪崩形成的知识以及滑行的雪团在简单结构上施加的力的知识。回顾有关滑行雪和力计算的现有文献的一个特殊困难是,许多理论和现象学分析是在技术报告中提出的,该报告可以追溯到1930年代雪崩科学的最早发展。回到这些主要来源并试图将它们纳入当代视野至关重要。对它们的详细,现代分析表明,滑行雪施加的力的数量级确实可以正确估计。但是,精确的物理机制仍然难以捉摸。我们根据相关主题的最新发现对现有方法进行评论,包括颗粒和塑料流的物理学以及对雪和雪崩(以及冰川和泥石流)的现场调查。在两个案例研究的基础上,定量地比较了滑行雪崩施加的力的计算方法。本文表明,如果知道积雪的深度和密度,那么某些方法的确可以预测在滑行雪崩或滑行的积雪情况下作用在简单障碍物上的力。

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