A Three-Dimensional Discrete Element Modeling to Cyclic Response of Geosynthetic-Encased Stone Column

被引:0
作者
Ling Zhang
Zeyu Xu
Heng Zhao
Shuai Zhou
机构
[1] Hunan University,College of Civil Engineering
[2] Hunan University,Key Laboratory of Building Safety and Energy Efficiency of the Ministry of Education
[3] Hunan University,National Center for International Research Collaboration in Building Safety and Environment
来源
International Journal of Geosynthetics and Ground Engineering | 2021年 / 7卷
关键词
Geosynthetics; Cyclic loads; Unconfined compression; Stone column; Discrete element method;
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学科分类号
摘要
A three-dimensional discrete element modeling of cyclic behavior of geosynthetic-encased stone column (GESC) has been recently conducted to better understand the interaction between geosynthetic encasement and stone aggregates on a microscopic scale. Comparisons between numerical results and laboratory observations indicate a good accuracy of the modeling. Different responses of GESC like deformation characteristics (e.g., axial compression and radial expansion), stress state (e.g., stress and lateral pressure coefficient within the column) are monitored during the simulations for understanding the mechanics of the reinforcement mechanism. To decipher the mechanism of the macro behavior under cyclic loading, the variation of property parameters of stone aggregates on a micro-scale (i.e., porosity and coordination number) within four stages of a loading cycle has been investigated. The stiffness of GESC is found to be prominently improved under cyclic loading as a result of the densification of stone aggregates and increased confinement provided by the geosynthetic encasement.
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