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Centrifuge Modeling of Geosynthetic-Encased Stone Columns in Soft Clay under Embankment

机译:堤防软粘土中土工合成封装石柱的离心建模

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The failure mechanism of geosynthetic-encased stone columns (GECs) in soft clay under embankment is still far from clear. In this study, centrifuge modeling was performed on two different stiffness GECs under embankment. The soft clay used in the tests was made of sodium bentonite powder and glycerin with a 1∶1 mixture ratio by mass. The undrained shear strength of the man-made clay is only 5.6 kPa. Two polymers with 123.4 and 13.6 kN/m stiffness were used in the tests. The test results show that the encased stone columns under embankment slope are bended outwards at approximately half depth of foundation. As it can be seen, the bending of the columns encased with low stiffness polymer was more apparent compared to the columns encased with high stiffness polymer. However, the failure mechanism of the GECs is different from that of the GECs in relatively stiff clay revealed by the authors before. In the authors' previous physical tests, the top of the encased columns in Kaolin clay under embankment bended outwards the largest. It can be concluded that the stiffness of soils between the columns may influence the failure modes of the GECs.
机译:在堤防下柔软粘土中的地磁包装石柱(GEC)的失败机制仍然远未清除。在这项研究中,在堤防下的两种不同的刚度GEC上进行离心机建模。试验中使用的软粘土由膨润土粉末和甘油制成,用1:1的混合物比质量制成。人造粘土的不介绍的剪切强度仅为5.6kPa。在试验中使用具有123.4和13.6 kN / M刚度的两种聚合物。测试结果表明,堤岸斜坡下的包装石柱在大约半处的基础上弯曲。可以看出,与用高刚度聚合物包封的柱相比,用低刚度聚合物包裹的柱的弯曲更加明显。然而,GECS的失败机制与前后相对僵硬的粘土中的GEC的失败机制不同。在提交人之前的物理测试中,在路堤下的高岭土粘土中的包装柱顶部是最大的。可以得出结论,柱之间的土壤刚度可能影响GEC的失效模式。

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