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Application of a New Rheological Model to Rock Avalanches: An SPH Approach

机译:流变模型在岩石雪崩中的应用:SPH方法

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摘要

Rock avalanches move large volumes of material causing a highly destructive power over large areas. In these events, it is possible to monitor the evolution of slopes but failure cannot be always prevented. For this reason, modelling of the propagation phase provides engineers with fundamental information regarding speed, track, runout and depth. From these data, it is possible to perform a better risk assessment and propose mitigation measures to reduce the potential hazard of specific area. The purpose of this paper is to present a depth integrated, SPH model, which can be used to simulate real rock avalanches and to assess the influence of the rheology on the avalanche properties. The paper compares the performance of different rheological models to reproduce the track, runout and depth of the final deposit for both, scale test and real events such as Frank and Thurwiesier rock avalanches. These sets of benchmarks provide information on the proposed model accuracy and limitations.
机译:岩石雪崩会移动大量物料,从而在大面积区域造成极高的破坏力。在这些情况下,可以监视坡度的变化,但不能总是防止破坏。因此,对传播阶段进行建模可以为工程师提供有关速度,轨道,跳动和深度的基本信息。根据这些数据,可以进行更好的风险评估并提出缓解措施,以减少特定区域的潜在危害。本文的目的是提供一个深度集成的SPH模型,该模型可用于模拟真实的岩石雪崩并评估流变学对雪崩性质的影响。本文比较了不同流变模型的性能,以再现规模试验和真实事件(例如Frank和Thurwiesier岩石雪崩)的最终沉积物的轨迹,跳动和深度。这些基准测试集提供了有关建议的模型准确性和局限性的信息。

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