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首页> 外文期刊>The Leading Edge >High-resolution geophysical techniques for improving hazard assessments of unstable rock slopes
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High-resolution geophysical techniques for improving hazard assessments of unstable rock slopes

机译:高分辨率地球物理技术,用于改善不稳定岩石边坡的危害评估

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摘要

Unstable slopes are an increasing concern in mountainous regions worldwide. Significant expansion of human habitats and transport routes in mountain valleys, melting of alpine permafrost as a consequence of global warming, and exceptional climatic events are amplifying the risks of catastrophic mountain-slope failures. To minimize the effects of such failures, short-term predictions are required for the timely evacuation of vulnerable populations, and medium-term forecasts are needed for the optimum design and construction of barriers that protect lifelines (e.g., roads, railways, and pipelines) and other expensive infrastructure. Moreover, long-term hazard assessments are necessary for prudent land-use planning. These tasks require detailed information on the extent and probable behavior of unstable rock. In this context, the locations and geometries of major fractures and faults are particularly important.
机译:不稳定的斜坡在世界范围内的山区中日益引起关注。人类栖息地和山谷运输路线的显着扩大,全球变暖导致的高山多年冻土融化以及特殊的气候事件,都加剧了灾难性的山坡破坏的风险。为了最大程度地减少此类故障的影响,需要及时进行短期预测以及时疏散弱势群体,并且需要进行中期预测才能优化设计和建造保护生命线(例如道路,铁路和管道)的屏障和其他昂贵的基础架构。此外,对于谨慎的土地利用规划,必须进行长期危害评估。这些任务需要有关不稳定岩石的范围和可能行为的详细信息。在这种情况下,主要裂缝和断层的位置和几何形状尤其重要。

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