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Consolidation theory for a composite foundation considering radial and vertical flows within the column and the variation of soil permeability within the disturbed soil zone

机译:考虑柱内径向和垂直流及扰动土带内土壤渗透率变化的复合地基固结理论

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摘要

To remedy the contradiction between the equal strain assumption and the flow continuity assumption at a soilcolumn interface, the traditional flow continuity assumption was abandoned and the radial and vertical flows within a stone column were incorporated to consider the column consolidation and deformation in a coupled fashion. Moreover, two possible variation patterns of the horizontal permeability coefficient of soil within the disturbed soil zone were included, to reflect the detrimental influence on the surrounding soil due to column construction. In addition, a linearly changed total vertical stress along the column depth was assumed, to achieve a more realistic stress distribution in practice. By considering the above mentioned characteristics, the governing equations for this type of consolidation problem were developed. The solutions for the governing equations were subsequently derived by using a new initial condition obtained from the equilibrium condition and equal strain assumption. On the basis of this, the average degree of consolidation of the composite foundation was obtained and discussed. Finally, a parametric study was performed and an application example was introduced to help engineers better utilize the present solution when applied to an actual design.
机译:为了解决土柱界面处的等应变假设与流动连续性假设之间的矛盾,放弃了传统的流动连续性假设,并结合了石柱内的径向和垂直流动,以耦合方式考虑柱固结和变形。此外,还包括了扰动土壤区域内土壤水平渗透系数的两种可能的变化模式,以反映柱构造对周围土壤的有害影响。另外,假设沿列深度线性变化的总垂直应力,以在实践中实现更逼真的应力分布。通过考虑上述特征,开发了用于这类固结问题的控制方程。随后,使用从平衡条件和相等应变假设获得的新初始条件,得出控制方程的解。在此基础上,获得并讨论了复合地基的平均固结度。最后,进行了参数研究,并介绍了一个应用示例,以帮助工程师在应用于实际设计时更好地利用本解决方案。

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