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陈昌富, 吴梦婷. 基于滑块平衡法顶部加箍碎石桩承载力计算方法[J]. 岩土工程学报, 2013, 35(7): 1253-1260.
引用本文: 陈昌富, 吴梦婷. 基于滑块平衡法顶部加箍碎石桩承载力计算方法[J]. 岩土工程学报, 2013, 35(7): 1253-1260.
CHEN Chang-fu, WU Meng-ting. Computational method for bearing capacity of upper geosynthetic-encased stone columns based on block limit equilibrium method[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(7): 1253-1260.
Citation: CHEN Chang-fu, WU Meng-ting. Computational method for bearing capacity of upper geosynthetic-encased stone columns based on block limit equilibrium method[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(7): 1253-1260.

基于滑块平衡法顶部加箍碎石桩承载力计算方法

Computational method for bearing capacity of upper geosynthetic-encased stone columns based on block limit equilibrium method

  • 摘要: 针对工程实践中出现的顶部加箍碎石桩复合地基形式,分析了其破坏模式。引入滑块平衡法,考虑土体自重效应和加箍段桩侧摩阻力影响,分别基于计算深基础承载力的Meyerhof法和Terzaghi法,建立了顶部加箍碎石桩在深层鼓胀破坏模式下的两种计算模型,并利用随机优化算法搜索临界滑裂面及其所对应的极限承载力。通过与实验结果以及与既有方法的对比分析发现:本计算方法更符合工程实际,而且就承载力而言,顶部加箍碎石桩的最优加箍深度约为4倍桩体直径。

     

    Abstract: The upper-geosynthetic-encased stone column (UGESC) is widely used in engineering practice as a composite foundation. Its failure modes are analyzed herein. Two models are established for the swelling failure mode of UGESC based on the Meyerhof approach and the Terzaghi approach for calculating the bearing capacity of deep foundations by introducing the block limit equilibrium method and considering the effect of self-weight of soils and surrounding skin friction of the encased segment. The stochastic optimization algorithm is employed to search for the critical slip surface, and the corresponding ultimate bearing capacity can be obtained by solving the established models. The comparative analysis of the test results and those from other approaches demonstrates that this novel computing method coincides more with the engineering practice. With respect to the bearing capacity, the optimal encased depth of UGESC is approximately four times the diameter of the stone columns.

     

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