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Methodologies for hydraulic hazard mapping in alluvial fan areas

机译:冲积风扇地区液压危险方法的方法

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Hydraulic hazards in alluvial fan areas are mainly related to torrential floods and debris flows. These processes are characterized by their fast time evolution and relevant sediment load. Rational approaches for the estimation of hazard levels in flood-prone areas make use of the maps of depth and velocity, which are provided by numerical simulations of the event. This paper focuses on national regulations regarding quantitative debris-flow hazard mapping and compares them to a simple conceptual model for the quantification of the hazard levels on the basis of human stability in a flood. In particular, the proposed method takes into account, in a conceptual fashion, both the local slope and the density of the fluid, that are crucial aspects affecting stability for processes in mountain environments. Physically-based hazard criteria provide more comprehensible and objective maps, increasing awareness among stakeholders and providing more acceptable constraints for land planning.
机译:冲积风扇区域的液压危险主要与暴洪洪水和碎片流动相关。这些过程的特征在于它们快速的时间进化和相关的沉积物负荷。洪水易于区域危害水平估计的合理方法利用深度和速度的地图,这是由事件的数值模拟提供的。本文重点介绍了关于定量泥石流危险造型的国家法规,并将其与洪水中人类稳定性的危险水平的量化进行了比较。特别地,所提出的方法以概念方式考虑到局部坡度和流体的密度,这是影响山环境中工艺稳定性的关键方面。物理危险标准提供更可理解的和客观地图,提高利益攸关方的意识,并为土地规划提供更可接受的限制。

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