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Analysis of Soil Disturbance Associated with Mandrel-Driven Prefabricated Vertical Drains Using an Elliptical Cavity Expansion Theory

机译:椭圆孔扩张理论分析心轴驱动预制垂直排水管的土壤扰动

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摘要

The installation of mandrel-driven prefabricated vertical drains and resulting disturbance of soft saturated clays are analyzed with a new elliptical cavity expansion theory. This formulated theory accounts for a concentric progression of elliptical cavities in an undrained condition and the large-strain effects in the plastic zone incorporating the modified Cam clay parameters. The total and effective stresses and excess pore water pressure in the soils surrounding the mandrel are predicted taking into account the mandrel installation rate, mandrel dimensions and the time factor. The theoretical variation of excess pore pressure is then compared with the results of large-scale consolidometer tests, which show that the estimated and measured pore pressures are almost the same. The plastic shear strain normalized by the rigidity index is then used to identify the zone of disturbance around the vertical drains. This formulation has been applied to a case history from the Muar clay region in Malaysia, and the results verify the usefulness of the method for determining the extent of the smear zone.
机译:利用新的椭圆腔膨胀理论分析了心轴驱动的预制垂直排水装置的安装以及由此产生的对软饱和粘土的扰动。这种公式化的理论解释了椭圆形空腔在不排水条件下的同心发展,以及在塑性区结合了改良的Cam粘土参数而产生的大应变效应。考虑到心轴安装速率,心轴尺寸和时间因素,可以预测心轴周围土壤的总有效应力和过大的孔隙水压力。然后,将多余孔隙压力的理论变化与大型固结仪测试的结果进行比较,结果表明,估计和测得的孔隙压力几乎相同。然后,使用刚度指数归一化的塑性剪切应变来识别垂直排水沟周围的扰动区域。该配方已应用于马来西亚麻坡粘土地区的病史,其结果证明了该方法可用于确定涂片区域的范围。

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