Three-Dimensional Finite Element Modeling of Stone Column-Improved Soft Saturated Ground

IF 1 Q4 ENGINEERING, CIVIL Civil Engineering Infrastructures Journal-CEIJ Pub Date : 2018-12-01 DOI:10.7508/CEIJ.2018.02.009
M. Shahraki, R. Rafiee-Dehkharghani, K. Behnia
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引用次数: 3

Abstract

Installing stone columns in the ground is an effective improvement technique to increase the load bearing capacity and reduce the consolidation settlement of the loose or weak cohesive soils. In addition to the increase in the bearing capacity and reduction in the settlement, stone columns can accelerate the dissipation rate of the excess pore water pressure generated by the surcharge, which expedites the ground improvement procedure. Due to these advantages, this technique has been widely used to improve the mechanical properties of the soft and problematic soils. In this study, the behavior of stone columns in saturated soft grounds are studied using Finite Element (FE) numerical method. For this purpose, a three-dimensional (3D) FE model of the stone column-improved ground is built considering the nonlinear behavior of the soil and stone columns. This model considers the effect of consolidation, and its accuracy is verified using the unit cell concept and the results of a real ground improvement project in Iran. In addition, a parametric study is performed using the verified FE model to investigate the effect of different material and geometric characteristics of the stone columns on the behavior of improved ground. At the end, the efficacy of the stone column method is compared to that of deep soil mixing (DSM) ground improvement technic.
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石柱加固软饱和地基三维有限元模拟
在地基中安装碎石柱是提高松散或弱粘性土的承载力和减少固结沉降的有效改良技术。除了增加承载力和减少沉降外,碎石柱还可以加快超载产生的多余孔隙水压力的消散速度,从而加快地基处理程序。由于这些优点,该技术已被广泛用于改善软土和问题土的力学性能。本文采用有限元数值方法研究了饱和软土地基中碎石柱的受力性能。为此,考虑到土和立柱的非线性行为,建立了立柱改良地基的三维有限元模型。该模型考虑了固结效应,并利用单元概念和伊朗实际地基改良工程的结果验证了其准确性。此外,还使用验证的有限元模型进行了参数研究,以研究不同材料和立柱几何特征对改良地基性能的影响。最后,将碎石桩法与深层搅拌地基改良技术的效果进行了比较。
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来源期刊
CiteScore
1.30
自引率
60.00%
发文量
0
审稿时长
47 weeks
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