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Stability charts and reinforcement with piles in 3D nonhomogeneous and anisotropic soil slope

机译:3D非均质各向异性土坡中的稳定性图和桩桩加固

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摘要

Soils are mostly nonhomogeneous and anisotropic in nature. In this study, nonhomogeneity and anisotropy of soil are taken into consideration by assuming that the cohesion increases with depth linearly and also varies with respect to direction at a particular point. A three-dimensional rotational failure mechanism is adopted, and then a three-dimensional stability analysis of slope is carried out with the failure surface in the shape of a curvilinear cone in virtue of the limit analysis method. A quasi static approach is used to develop stability charts in nonhomogeneous and anisotropic soils. One can easily read the safety factors from the charts without the need for iterative procedures for safety factors calculation. The charts are of practical importance to prevent a plane failure in excavation slope whether it is physically constrained or not. Then the most suitable location of piles within the reinforced slope in nonhomogeneous and anisotropic soils is explored, as well as the interactions of nonhomogeneous and anisotropic coefficients on pile reinforcement effects. The results indicate that piles are more effective when they are located between the middle and the crest of the slope, and the nonhomogeneous coefficient as well as the anisotropic coefficient will not only influence the most suitable location for piles but also affect the calculated safety factor of existing reinforced slope. In addition, the two coefficients will interact with each other on the effect on slope reinforcement.
机译:土壤大多是非均质的和各向异性的。在这项研究中,通过假定内聚力随深度线性增加并且在特定点的方向也发生变化,来考虑土壤的非均质性和各向异性。采用三维旋转破坏机理,然后利用极限分析方法,对破坏面为曲线圆锥形的边坡进行三维稳定性分析。准静态方法用于在非均质和各向异性土壤中建立稳定性图表。您可以轻松地从图表中读取安全系数,而无需使用迭代过程来计算安全系数。这些图表对于防止开挖斜坡中的平面故障(无论是否受到物理约束)具有实际意义。然后,研究了非均质和各向异性土中加筋边坡中桩的最合适位置,以及非均质和各向异性系数之间的相互作用对桩加固的影响。结果表明,桩位于边坡中部和波峰之间更为有效,非均质系数和各向异性系数不仅会影响桩的最合适位置,还会影响桩的安全系数计算。现有的加固边坡。另外,这两个系数将在对边坡加固的影响上相互影响。

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