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Numerical simulations of stone column installation

机译:石柱安装的数值模拟

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This paper describes the results of numerical simulations investigating the installation effects of stone columns in a natural soft clay. The geometry of the problem is simplified to axial symmetry, considering the installation of one column only. Stone column installation is modelled as an undrained expansion of a cylindrical cavity. The excess pore pressures generated in this process are subsequently assumed to dissipate towards the permeable column. The process is simulated using a finite element code that allows for large displacements. The properties of the soft clay correspond to Bothkennar clay, modelled using S-CLAY1 and S-CLAY1S, which are Cam clay-type models that account for anisotropy and destructuration. Stone column installation alters the surrounding soil. The expansion of the cavity generates excess pore pressures, increases the horizontal stresses of the soil, and most importantly modifies the soil structure. The numerical simulations performed allow quantitative assessment of the post-installation value of the lateral earth pressure coefficient and the changes in soil structure caused by column installation. These effects and their influence on stone column design are discussed.
机译:本文介绍了数值模拟的结果,以研究天然软粘土中石柱的安装效果。仅考虑安装一根色谱柱,问题的几何形状就简化为轴向对称。石柱的安装建模为圆柱腔的不排水扩展。随后假定在该过程中产生的多余的孔隙压力向着渗透柱消散。使用允许大位移的有限元代码模拟该过程。软粘土的属性对应于Bothkennar粘土,使用S-CLAY1和S-CLAY1S建模,这是考虑了各向异性和破坏的Cam粘土类型的模型。石柱安装会改变周围的土壤。空腔的膨胀会产生过大的孔隙压力,增加土壤的水平应力,最重要的是改变土壤结构。进行的数值模拟可以定量评估侧向土压力系数的安装后值以及由柱安装引起的土壤结构变化。讨论了这些影响及其对石柱设计的影响。

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