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LANDSLIDES FROM MASSIVE ROCK SLOPE FAILURE AND ASSOCIATED PHENOMENA

机译:来自大规模岩石斜坡故障及相关现象的山体滑坡

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Landslides from massive rock, slope failure (MRSF) are a major geological hazard in many parts of the world. Hazard assessment is made difficult by a variety of complex initial failure processes and unpredictable post-failure behaviour, which includes transformation of movement mechanism, substantial changes in volume, and changes in the characteristics of the moving mass. Initial failure mechanisms are strongly influenced by geology and topography. Massive rock slope failure includes rockslides, rock avalanches, catastrophic spreads and rockfalls. Catastrophic debris flows can also be triggered by massive rock slope failure. Volcanoes are particularly prone to massive rock slope failure and can experience very large scale sector collapse or much smaller partial collapse. Both these types of failures may be transformed into lahars which can travel over 100 km from their source, MRSF deposits give insight into fragmentation and emplacement processes. Slow mountain slope deformation presents problems in interpretation of origin and movement mechanism. The identification of thresholds for the catastrophic failure of a slow moving rock slope is a key question in hazard assessment. Advances have been made in the analysis and modeling of initial failure and post-failure behaviour. However, these studies have been retrodictive in nature and their true predictive potential for hazard assessment remains uncertain yet promising.
机译:来自大规模岩石的山体滑坡,坡度失败(MRSF)是世界许多地区的主要地质灾害。通过各种复杂的初始失败过程和不可预测的失败后行为难以实现危险评估,包括移动机构的转换,体积大的变化,以及移动质量的特征的变化。初始失败机制受地质和地形的强烈影响。巨大的摇滚斜坡衰竭包括岩石条,岩石雪崩,灾难性的蔓延和岩石。灾难性的碎片流量也可以通过大规模的岩石斜率破坏触发。火山特别容易发生巨大的岩石坡衰竭,并且可以体验大规模的突破或更小的部分崩溃。这两种类型的故障都可以转变为拉哈尔格,距离他们的来源超过100公里,MRSF沉积物深入了解碎片和施加过程。慢山坡变形呈现出原产地和运动机制的解释问题。慢动移动摇滚斜坡灾难性失败的阈值是危害评估中的关键问题。在初始失败和失败后行为的分析和建模方面取得了进展。然而,这些研究在自然界中被撤消了,其真正的预测性评估潜力仍然不确定。

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