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Effects of Two-Phase Flow of Water and Air on Shallow Slope Failures Induced by Rainfall: Insights from Slope Stability Assessment at a Regional Scale

机译:两相流水和空气流动对降雨造成浅层故障的影响:区域规模坡度稳定性评估见解

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Over 160 shallow landslides resulted from heavy rainfall that occurred in 26-27 July 2011 at Umyeon Mountain, Seoul, South Korea. To accurately reflect the fluid flow mechanism in the void spaces of soils, we considered the two-phase flow of water and air for rainfall infiltration analysis using available historical rainfall data, topographic maps, and geotechnical/hydrological properties. Variations in pore water and air pressure from the infiltration analysis are used for slope stability assessment. By comparing the results from numerical models applying single- and two-phase flow models, we observed that air flow changes the rate of increase in pore water pressure, influencing the safety factor on slopes with a low infiltration capacity, where ponding is more likely to occur during heavy rainfall. Finally, several slope failure assessments were conducted to evaluate the usefulness of using the two-phase flow model in forecasting slope stability in conditions of increased rainfall sums. We observed that the two-phase flow model reduces the tendency of over-prediction compared to the single-phase model. The results from the two-phase flow model revealed good agreement with actual landslide events.
机译:超过160次浅层滑坡,从2011年7月26日至27日发生的大雨降雨导致了韩国首尔的Umyeon山。为了准确地反映土壤空隙空间中的流体流动机制,我们认为使用可用的历史降雨数据,地形图和岩土工程/水文特性进行降雨渗透分析的两相流量。来自渗透分析的孔隙水和空气压力的变化用于边坡稳定性评估。通过比较应用单相和两相流动模型的数值模型的结果,观察到空气流量会改变孔隙水压力的增加速率,影响渗透能力低的斜坡上的安全系数,其中池塘更有可能发生在大雨期间。最后,进行了几个坡度故障评估,以评估使用两相流模型在预测降雨量的条件下预测边坡稳定性的有用性。我们观察到与单相模型相比,两相流模型降低了过度预测的趋势。两相流模型的结果显示出与实际滑坡事件的良好一致性。

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