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A quasi-equal strain solution for the consolidation of a rigid pile composite foundation under embankment loading condition

机译:路堤荷载条件下刚性桩复合地基固结的准等应变解

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Based on the deformation characteristics of rigid pile, a quasi-equal strain assumption was proposed to analyze the consolidation properties of a rigid pile composite foundation. By considering the parabolic distribution of the horizontal permeability of the surrounding soil, the initial consolidation stress difference in the underlying stratum and the time and depth dependent additional stress, analytic solutions for the consolidation degree were derived. The analytical solution was compared to the numerical simulation obtained from the standard finite element method which validates the accuracy of the proposed analytical method. Furthermore, the factors that affect consolidation properties were systematically analyzed. The results show that the consolidation rate for a rigid pile composite foundation was slower than that for a composite foundation with a granular column but was more rapid than that for a natural double-layered ground. The consolidation rate increases with the relative reinforced depth, the permeability coefficient, the ratio of the constrained modulus of the pile to that of the surrounding soil, the ratio of the area replacement and the ratio of the constrained modulus of the cushion layer to that of the surrounding soil. The consolidation rate increases with the decrease in the loading period and the pile-end resistance coefficient.
机译:根据刚性桩的变形特性,提出了一个拟等应变假设来分析刚性桩复合地基的固结特性。通过考虑周围土壤水平渗透率的抛物线分布,下层地层的初始固结应力差以及与时间和深度有关的附加应力,得出固结度的解析解。将解析解与从标准有限元方法获得的数值模拟进行了比较,这验证了所提出解析方法的准确性。此外,系统地分析了影响固结特性的因素。结果表明,刚性桩复合地基的固结速率比带粒状柱的复合地基的固结速率慢,但比天然双层地基的固结速率更快。固结率随相对增强深度,渗透系数,桩与周围土壤的约束模量之比,面积置换率和垫层与混凝土的约束模量之比而增加。周围的土壤。固结率随荷载周期和桩端阻力系数的减小而增加。

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