Numerical simulation of centrifuge experiments on liquefaction mitigation of silty soils using stone columns

被引:0
作者
Liang Tang
Xiaoyu Zhang
Xianzhang Ling
机构
[1] Harbin Institute of Technology,School of Civil Engineering
来源
KSCE Journal of Civil Engineering | 2016年 / 20卷
关键词
earthquake; ground improvement; liquefaction; stone column; finite element; centrifuge modeling;
D O I
暂无
中图分类号
学科分类号
摘要
Installation oF Stone Column (SC) is a promising ground improvement technique to mitigate liquefaction hazards in sand stratum. In this study, a three-dimensional (3D) Finite Element (FE) analysis was used to simulate a centrifuge experiment on the mitigation of silty sand strata liquefaction using SC approach. The predicted response of the silty sand and SC matched the experimental data well. The overall site-stiffening effects due to the installed SCs as well as the distributions of the shear stress and shear stress reductions were evaluated. A parametric study was conducted to investigate the effect of the SC permeability and the surface load at the SC zone on the effectiveness of liquefaction mitigation. The results showed that the SCs behaved in a combined shear and flexure mode. Furthermore, the SCs with permeability exceeding a threshold value can dramatically decrease the liquefaction hazard. On the other hand, larger surface load did not prevent soil liquefaction and produced negligible benefits in stiffening. The present study further enhances the current understanding of the effectiveness of SC remediation approaches in the silty sand.
引用
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页码:631 / 638
页数:7
相关论文
共 40 条
[1]  
Adalier K.(2003)Stone columns as liquefaction countermeasure in non-plastic silty soils Soil Dynamics and Earthquake Engineering 23 571-584
[2]  
Elgamal A.(1955)Theory of elasticity and consolidation for a porous anisotropic solid Journal of Applied Physics 26 182-185
[3]  
Meneses J.(2009)Mitigation of liquefactioninduced lateral deformation in a sloping stratum: Three-dimensional numerical simulation Journal of Geotechnical and Geoenvironmental Engineering 135 1672-1682
[4]  
Baez J.(2003)Modeling of cyclic mobility in saturated cohesionless soils International Journal of Plasticity 19 883-905
[5]  
Biot M. A.(2001)Application of periodic boundary for large pile group Journal of Geotechnical and Geoenvironmental Engineering 127 889-892
[6]  
Elgamal A.(2011)Largescale numerical modeling in geotechnical earthquake engineering International Journal of Geomechanics 11 490-503
[7]  
Lu J.(2003)High-modulus columns for liquefaction mitigation Journal of Geotechnical and Geoenvironmental Engineering 130 561-571
[8]  
Forcellini D.(2008)Mitigation of liquefaction potential of silty sands Proc. From Research to Practice in Geotechnical Engineering Congress 2008 180 433-451
[9]  
Elgamal A.(1977)Stabilization of potentially liquefiable sand deposits using gravel drains Geotechnical Engineering Division 103 757-768
[10]  
Yang Z.(1971)Simplified procedure for evaluating soil liquefaction potential Journal of the Soil Mechanics and Foundations Division 97 1249-1273