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Analytical solution for free strain consolidation of stone column-reinforced soft ground considering spatial variation of total stress and drain resistance

机译:考虑总应力和排水阻力空间变化的石柱加筋软土地基自由应变固结的解析解

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This paper provides an analytical solution for consolidation problem of a stone column-improved soft soil layer subjected to an instantly applied loading under free strain condition. The radial and vertical consolidation equations are solved in a coupled fashion for both the stone column and its surrounding soil. A general solution of excess pore water pressure at any point of a unit cell model in terms of a Fourier-Bessel series was achieved using the combination of separation of variables method and orthogonal expansion technique. The obtained solution can capture the drain (well) resistance effect and the space-dependent distribution of total vertical stress induced by the external loading. Indeed, since the permeability and size of the stone column are directly utilised in the governing equations and the analytical solution, the drain resistance is directly captured. The capabilities of the proposed solution are exhibited through a comprehensive worked example, while the accuracy of the solution is verified against a finite element simulation and field measurements of a case history with good agreements. To examine the effect of various factors on consolidation behaviour of the composite ground, a parametric study involving column spacing, modulus and permeability of soft soil along with distribution pattern of total stress and thickness of soil layer is also conducted. A decrease in the column spacing or an increase in the modulus or permeability of soft soil led to the acceleration of the consolidation process of the soil region, while the variation of the total stress with depth and the thickness of soil deposit primarily affected the consolidation rate of stone column. Under the free strain condition, the average differential settlement between the stone column and encircling soil was indeed considerable during the consolidation process.
机译:本文为在自由应变条件下即​​时施加荷载的石柱改良软土层的固结问题提供了一种解析解决方案。径向和垂直固结方程以耦合方式求解石柱及其周围土壤。使用变量分离方法和正交展开技术相结合,获得了在傅立叶-贝塞尔级数基础上任何单元格模型中任何点的孔隙水压力的总解。所获得的解决方案可以捕获漏极(阱)电阻效应以及由外部载荷引起的总垂直应力的空间依赖性分布。实际上,由于石柱的渗透性和大小直接用在控制方程式和分析解决方案中,因此可以直接捕获漏极电阻。通过一个综合的工作示例展示了所提出的解决方案的功能,同时通过有限元模拟和具有良好协议的案例历史的现场测量验证了该解决方案的准确性。为了研究各种因素对复合地基固结特性的影响,还进行了涉及柱间距,软土模量和渗透性以及总应力和土层厚度分布模式的参数研究。柱间距的减小或软土模量或渗透率的增加导致土壤区域固结过程的加速,而总应力随深度和土层厚度的变化主要影响固结速率石柱。在自由应变条件下,固结过程中石柱与周围土壤之间的平均差异确实很大。

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