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Numerical modeling on the stability of slope with foundation during rainfall

机译:降雨条件下边坡基础稳定性的数值模拟

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The movement of soil along a slope during rainfall can cause serious economic damage and can jeopardize human life. Accordingly, predicting slope stability during rainfall is a major issue in geotechnical engineering. Due to rainwater penetrating the soil, the negative pore water pressure will decrease, in turn causing a loss of shear strength in the soil and ultimately slope failure. More seriously, many constructions such as houses and transmission towers built in/on slopes are at risk when the slopes fail. In this study, the numerical simulation using 2D finite difference program, which can solve a fully coupled hydromechanical problems, was used to evaluate the effects of soil properties, rainfall conditions, and the location of a foundation on the slope instability and slope failure mechanisms during rainfall. A slope with a transmission tower located in Namyangju, South Korea was analyzed in this study. The results showed that the correlation between permeability and rainfall intensity had an important role in changing the pore water pressure via controlling the infiltrated rainwater. The foundation of the transmission tower was stable during rainfall because the slope failure was estimated to occur at the toe of the slope, and did not go through the foundation.
机译:降雨期间土壤沿斜坡的运动会造成严重的经济损失,并可能危及人类的生命。因此,预测降雨期间的边坡稳定性是岩土工程中的主要问题。由于雨水渗透到土壤中,负孔隙水压力将降低,进而导致土壤中抗剪强度的损失,最终导致边坡破坏。更严重的是,当斜坡失灵时,许多在斜坡上/之上建造的房屋和输电塔之类的建筑都处于危险之中。在这项研究中,使用二维有限差分程序的数值模拟可以解决完全耦合的水力机械问题,用于评估土壤特性,降雨条件以及地基位置对边坡失稳和边坡破坏机制的影响。雨量。本研究分析了位于韩国南阳州市的带有输电塔的斜坡。结果表明,渗透率与降雨强度之间的相关性通过控制雨水的渗透对改变孔隙水压力具有重要作用。输电塔的基础在降雨期间是稳定的,因为估计边坡破坏发生在边坡的脚趾处,并且没有穿过基础。

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