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Mechanisms of failure on terraced slopes: the Valtellina case (northern Italy)

机译:梯田斜坡的破坏机理:Valtellina案例(意大利北部)

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摘要

Slopes that are terraced by means of dry-stone retaining walls are very common in the alpine environment. In Valtellina, a typical Italian alpine valley, these slopes are widespread and quite often involved in superficial mass movements that can result in severe damage and casualties. For an in-depth understanding of the processes that can trigger these events, numerical modeling of groundwater movement and a related stability analysis were performed on a detailed scale, based on an intensive monitoring of rainfall events and groundwater movement. Field observations suggest that the formation of a perched groundwater table at the contact between the bedrock and the backfill soil of walls as well as the concomitant saturation of this backfill soil are the determining factors of potential slope failure. The numerical models support these observations. In addition, the models are able to explain the mechanisms of formation of perched water tables, highlighting the factors that can influence groundwater levels and slope instabilities.
机译:在高山环境中,用干石挡土墙筑成梯田的斜坡非常普遍。在典型的意大利高山山谷瓦尔泰利纳(Valtellina),这些斜坡十分普遍,并且经常涉及表面群众运动,这些运动可能导致严重的破坏和人员伤亡。为了深入了解可能触发这些事件的过程,在对降雨事件和地下水运动的密集监视的基础上,对地下水运动进行了数值建模并进行了相关的稳定性分析。野外观察表明,在基岩与墙体回填土之间的接触处形成的地下水位以及这种回填土随之饱和是潜在的边坡破坏的决定性因素。数值模型支持这些观察。此外,这些模型还能够解释栖息地下水位的形成机理,突出了可能影响地下水位和边坡不稳定性的因素。

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