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Cut Slopes in Clayey Soils: Consolidation and Overall Stability by Finite Element Method

机译:粘土土壤切坡:有限元方法的固结和整体稳定性

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摘要

When a cut slope in a saturated clay is undertaken, a transient water flow occurs and stress transferences from the water to the soil skeleton take place in time (consolidation). Mainly in strongly overconsolidated clays, these stress transferences may determine swelling of soil and therefore reduction of its shear strength in time. However, the lowering of the water level associated to the cut increases effective mean stress, which may therefore counterbalance the above-mentioned effect. In the paper, the behaviour of a cut slope in an overconsolidated clay is analysed by a finite element program that incorporates the Biot consolidation theory (coupled analysis), with constitutive relations simulated by the p-q-θ critical state model. In addition, the variation in time of the overall stability is assessed with a computer program that uses the finite element results and formulations of the critical state soil mechanics. In order to achieve a more complex geotechnical interpretation of the problem, the analysis in time of the excess pore pressures, effective stresses, displacements and stress levels is also presented. Finally, comparisons of stability results are analysed by changing some parameters, namelyrnthe problem geometry (weight of excavated soil) and the over-consolidation ratio of the clay.
机译:当在饱和黏土中开挖坡度时,会发生短暂的水流,并且应力会从水中及时转移到土壤骨架(固结)。这些应力转移主要在强烈超固结的粘土中,可能决定土壤的溶胀,从而决定其抗剪强度的及时降低。然而,与切口相关的水位的降低增加了有效平均应力,因此可以抵消上述效果。在本文中,通过结合Biot固结理论(耦合分析)的有限元程序,通过p-q-θ临界状态模型模拟了本构关系,来分析超固结黏土中挖坡的行为。此外,通过使用有限元结果和临界状态土壤力学公式的计算机程序,可以评估整体稳定性随时间的变化。为了对问题进行更复杂的岩土工程解释,还提出了对超孔隙压力,有效应力,位移和应力水平的及时分析。最后,通过改变一些参数,即问题的几何形状(开挖的土的重量)和粘土的超固结比,来分析稳定性结果的比较。

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