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Effect of a less permeable stronger soil layer on the stability of non-homogeneous unsaturated slopes

机译:不透水更强的土层对非均相不饱和斜坡稳定性的影响

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摘要

Slope failure occurs due to an increase in the saturation level and a subsequent decrease in matric suction in unsaturated soil. This paper presents the results of a series of centrifuge experiments and numerical analyses on a 55 degrees inclined unsaturated sandy slope with less permeable, stronger silty sand layer inclusion within it. It is observed that a less permeable, stronger silty sand layer in an otherwise homogeneous sandy soil slope hinders the infiltration of water. The water content of the slope just above the stronger layer increases significantly, compared to elsewhere. No shear band is found to initiate in a homogeneous sandy soil slope, whereas for a non-homogeneous slope, they initiate just above the less pervious, stronger layer. A discontinuity of the shear zone is also observed for the case of a non-homogeneous soil slope. The factor of safety of a non-homogeneous, unsaturated soil slope decreases because of the less permeable, stronger layer. It decreases significantly if this less permeable, stronger soil layer is located near the toe of the slope.
机译:由于饱和水平的增加和不饱和土壤中的测量性吸力的增加,发生斜率发生故障。本文介绍了一系列离心机实验的结果,并在55度的倾斜不饱和砂坡上的数值分析,在其内包含不透气,更强的粉状砂层。观察到,在其他均匀的砂土斜坡中透过透水,更强的粉砂层阻碍了水的渗透。与其他地方相比,刚刚高于较强的层上方的坡度的含水量显着增加。没有发现剪切带在均匀的砂土斜坡中启动,而对于非均匀的斜坡,它们刚刚在较不可透过的更强的层上以上。对于非均匀土斜率的情况,还观察到剪切区的不连续性。由于不透气,更强的层,非均匀的不饱和土斜率的安全因子降低。如果这种不透水,更强的土层位于斜坡的脚趾附近,它会显着降低。

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