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A force transfer mechanism for triggering landslides during rainfall infiltration

机译:降雨入渗时触发滑坡的力传递机制

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摘要

Shallow slope failures induced by rainfall infiltration occur frequently,and the relevant triggering mechanisms have been widely studied.Rainfall-induced landslides are widely recognized to be caused by increases in soil weight,seepage force and pore water pressure or decreases in soil mechanical properties.However,even when all these factors are considered,some landslides still cannot be explained well.The increased pore water pressure in a slope reduces the effective stress of the soil and may trigger slope failure.Similarly,the pore gas pressure in a slope also reduces the effective stress of the soil but has been neglected in previous studies.As the viscosity of air is nearly negligible when compared with that of water,the pore gas pressure spreads faster,and its influence is wider,which is harmful for the stability of the slope.In this paper,the effects of pore gas pressure are considered in a shallow slope stability analysis,and a self-designed experiment is conducted to validate the force transfer mechanism.Numerical simulation results show that the pore gas pressure in the slope increases sharply at different locations under heavy rainfall conditions and that the pore gas pressure causes a rapid decrease in the slope safety factor.Laboratory experimental results show that the pore gas pressure throughout the whole unsaturated zone has the same value,which indicates that the gas pressure could spread quickly to the whole sample.
机译:降雨入渗引起的浅层边坡破坏频繁发生,相关的触发机制已得到广泛研究。降雨引起的滑坡被普遍认为是由于土壤重量,渗流力和孔隙水压力的增加或土壤力学性质的降低而引起的。即使考虑到所有这些因素,仍然无法很好地解释某些滑坡。斜坡中的孔隙水压力升高会降低土壤的有效应力并可能触发斜坡破坏。同样,斜坡中的孔隙水压力也会降低坡度。土壤的有效应力,但在以前的研究中已被忽略。由于与水相比,空气的粘度几乎可以忽略不计,因此孔隙气体压力分布较快,影响范围较大,这对边坡的稳定性有害。本文在浅层边坡稳定性分析中考虑了孔隙气体压力的影响,并进行了自行设计的实验来验证数值模拟结果表明,在强降雨条件下,边坡孔隙水压力在不同位置急剧增加,孔隙水压力导致边坡安全系数迅速减小。整个非饱和区的压力值是相同的,这表明气压可以迅速扩散到整个样品。

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  • 来源
    《山地科学学报(英文版)》 |2018年第11期|2480-2491|共12页
  • 作者单位

    College of Hydraulic & Environment Engineering, China Three Gorges University, Yichang 443002, China;

    College of Hydraulic & Environment Engineering, China Three Gorges University, Yichang 443002, China;

    College of Hydraulic & Environment Engineering, China Three Gorges University, Yichang 443002, China;

    College of Hydraulic & Environment Engineering, China Three Gorges University, Yichang 443002, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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