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Deformation and failure characteristics of embankment upon the slope in permafrost area under different foundation slope

机译:不同基础坡度下多冻地面积坡面的变形与故障特征

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To investigate the effect of foundation slope on stability of embankment upon the slope in permafrost area, 3 groups of model tests with different foundation slope are designed using the mechanical similarity based on geotechnical centrifuge modeling, when the freezing-thawing depth of the embankment reaches the greatest. The results show that: (1) The foundation slope has effect on the stability of the embankment. The deformation mainly concentrates on the soil layers above the freezing-thawing interface, and the deformation mutation point takes place at the freezing-thawing interface. (2) According to fracture characteristics and failure severity of the embankment, failure modes can be divided into the cracking failure in shallow layer and in deep layer. (3) The cause of unstable failure is the deficiency of shear resistance strength of the weak belt, the soil layers above the freezing-thawing interface slips along the freezing-thawing interface under gravity load. (4) Under the experimental conditions, the critical value of the foundation slope influencing on the stability of the embankment is about 1:6 when the height of the slope embankment is 5.0 m.
机译:为了探讨基础坡对斜坡斜坡稳定性的影响,采用基于岩土离心机建模的机械相似性设计3组模型试验,当堤防冻结深度到达时最伟大的。结果表明:(1)基础坡对堤坝稳定性有影响。变形主要集中在冰冻解冻界面上方的土层上,并且在冻融界面处发生变形突变点。 (2)根据堤防的断裂特性和故障严重程度,失效模式可分为浅层和深层的开裂失败。 (3)不稳定故障的原因是弱带的剪切电阻强度的缺陷,冰冻解冻界面上方的土壤层沿着重力负荷下的冷冻解界界面滑动。 (4)在实验条件下,当斜坡堤的高度为5.0米时,基础坡度影响的基础边坡的临界值约为1:6。

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