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Governing failure mode of unsaturated soil slopes under rainwater infiltration

机译:雨水渗透下不饱和土坡的控制失效模式

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Due to rainwater infiltration and loss of matric suction above the wetting font, both translational and rotational slips may occur in an unsaturated soil slope. It is useful to know which failure mode is more critical. The governing failure mode is likely to be affected by soil properties, slope geometry, depth of wetting front and contribution of matric suction to shear strength, which were investigated in this study. Specifically, upper bound limit analysis was adopted to develop stability charts based on rotational failure mechanism, and infinite slope model was used to develop stability charts based on translational failure mechanism. For a slope, the failure mechanism which gives the lower factor of safety is the governing failure mode. It was found that the failure mode of an unsaturated soil slope under rainfall is determined by parameter group c′/γHtan?′ for a given slope angle, depth of wetting front and contribution of matric suction to shear strength. With the increase in depth of wetting front and greater contribution of matric suction to shear strength, a slope is more prone to translational failure. Slopes with angle β = 45° are most vulnerable to translational failure, while gentler slopes (e.g. β = 15°) and steeper slopes (e.g. β = 75°) are more susceptible to rotational failure.
机译:由于雨水渗透和润湿字体上方的损失,旋转滑动均可能发生在不饱和的土坡中。知道哪种故障模式更为重要。控制失败模式可能受到土壤性质,坡度几何形状,润湿深度和抗型抗剪切强度的贡献的影响,在本研究中研究。具体地,采用上限的极限分析来开发基于旋转故障机制的稳定性图表,并且使用无限斜率模型基于平移故障机制开发稳定性图表。对于斜坡,使安全性较低的故障机制是控制故障模式。发现降雨下的不饱和土坡的故障模式由参数组C'/γHTANα'用于给定的斜坡角度,润湿前正面深度和光学抽吸剪切强度的贡献。随着润湿深度的深度和更大贡献的剪切强度,斜坡更容易出现平移失效。角度β= 45°的斜率最容易转化失败,而温叶斜率(例如β= 15°)和陡峭的斜率(例如β= 75°)更容易受到旋转破坏。

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