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Analysis of landslide triggering conditions in the Sarno area using a physically based model

机译:基于物理模型的萨诺地区滑坡触发条件分析

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Rainfall is recognized as a major precursor of many types of slope movements. The technical literature reports both study cases and models of landslides induced by rainfall. Subsurface hydrology has a dominant role since changes in the soil water content significantly affect the soil shear strength. The analytical approaches used are very different, ranging from statistical models to distributed and complete models. The latter take several components into account, including specific site conditions, mechanical, hydraulic and physical soil properties, local seepage conditions, and the contribution of these to soil strength. brbr This paper reports a study using a complete model, named SUSHI (Saturated Unsaturated Simulation for Hillslope Instability), to simulate the role of subsurface hydrology in rain-induced landslides, on a case of great interest both in terms of its complexity and its severity. brbr The landslide-prone area in question is located in Campania (southern Italy), where disastrous mudflows occurred in May 1998. The region has long been affected by rainfall-induced slope instabilities, which often involve large areas and affect many people. The application allows a better understanding of the role of rainfall infiltration and suction changes in the triggering mechanism of the phenomena. These changes must be carefully considered when assessing hazard levels and planning mitigation interventions regarding slope stability.
机译:降雨被认为是许多类型的斜坡运动的主要前兆。技术文献报道了降雨引起的滑坡的研究案例和模型。地下水文学起着主导作用,因为土壤含水量的变化会显着影响土壤的抗剪强度。使用的分析方法非常不同,从统计模型到分布式模型和完整模型。后者考虑了几个组成部分,包括特定的场地条件,机械,水力和物理土壤特性,局部渗流条件以及这些因素对土壤强度的贡献。 这篇论文报告了一项研究,该研究使用一个名为SUSHI(坡度不饱和的饱和不饱和模拟)的完整模型来模拟地下水文学在降雨诱发的滑坡中的作用,这在两个方面都引起了人们的极大关注它的复杂性和严重性。 有问题的滑坡易发区位于坎帕尼亚(意大利南部),1998年5月发生了灾难性的泥石流。该地区长期以来受到降雨引起的边坡失稳的影响,该失稳常常涉及大面积地区,很多人。该应用程序可以更好地了解降雨入渗和吸力变化在现象触发机制中的作用。在评估危险等级和规划有关边坡稳定性的缓解措施时,必须仔细考虑这些变化。

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