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首页> 外文期刊>Environmental Geology >Rainfall, infiltration, and groundwater flow in a terraced slope of Valtellina (Northern Italy): field data and modelling
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Rainfall, infiltration, and groundwater flow in a terraced slope of Valtellina (Northern Italy): field data and modelling

机译:瓦尔泰利纳(意大利北部)梯田斜坡上的降雨,入渗和地下水流:现场数据和模型

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摘要

The aim of this work was to understand and reproduce the hydrological dynamics of a slope that is terraced by dry retaining walls. This approach will help to assess the influence of temporary groundwater perched tables, which can form at the area of contact between the backfill of the wall and the bedrock, on the wall's stability. The study area is located in Valtellina (Northern Italy) near the village of Tresenda, which was affected by three debris flows that caused 18 casualties in 1983. In 2002, another event of the same type affected this area, but that event only caused the interruption of a major transport road. Direct observations of one of the three flows in 1983 and the reconstruction of 2002 indicated that the most probable triggering cause was the collapse of a dry retaining wall after its backfill was saturated. After field work was conducted to discover the principal hydrological and hydrogeological characteristics of the slope, numerical modelling was performed to determine under what conditions the soil will saturate, and therefore, when the collapse of a dry retaining wall might occur. First, a study of the interaction between pluviometric events and groundwater behaviour was conducted; then, modelling was performed using finite element analysis software that permits the calculation of groundwater flow both for completely and partially saturated conditions. The model was calibrated and validated using the hydrographs of the groundwater table recorded on site. It can be used as a predictive instrument for rainfall events of a given duration and return period.
机译:这项工作的目的是了解和再现由干燥挡土墙构成的斜坡的水文动态。这种方法将有助于评估临时的地下水位表(它可能在墙的回填物和基岩之间的接触区域形成)对墙的稳定性的影响。研究区域位于Tresenda村附近的Valtellina(意大利北部),该地区受到3次泥石流的影响,1983年造成18人伤亡。2002年,同一类型的另一事件影响了该地区,但该事件仅造成了中断主要运输道路。对1983年的三种流动之一和2002年的重建进行的直接观察表明,最可能的触发原因是干式挡土墙的回填饱和后倒塌。在进行野外工作以发现斜坡的主要水文和水文地质特征之后,进行了数值模拟,以确定土壤将在什么条件下饱和,从而确定何时可能发生干式挡土墙倒塌。首先,进行了测雨事件与地下水行为之间相互作用的研究。然后,使用有限元分析软件进行建模,该软件可以计算完全和部分饱和条件下的地下水流量。使用现场记录的地下水位水位图对模型进行校准和验证。它可以用作给定持续时间和返回期降雨事件的预测工具。

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