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李忠诚, 梁志荣. 侧移土体成拱效应及被动桩计算模式分析[J]. 岩土工程学报, 2011, 33(zk1): 106-111.
引用本文: 李忠诚, 梁志荣. 侧移土体成拱效应及被动桩计算模式分析[J]. 岩土工程学报, 2011, 33(zk1): 106-111.
LI Zhong-cheng, LIANG Zhi-rong. Soil arching effect and calculation model for soil pressures of passive piles[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(zk1): 106-111.
Citation: LI Zhong-cheng, LIANG Zhi-rong. Soil arching effect and calculation model for soil pressures of passive piles[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(zk1): 106-111.

侧移土体成拱效应及被动桩计算模式分析

Soil arching effect and calculation model for soil pressures of passive piles

  • 摘要: 采用数值分析模型模拟了土体位移条件下被动桩的成拱效应,得到了运动土体成拱效应的一般规律。从土体的运动和应力的传递方式入手,采用将被动桩分为被动侧成拱和主动侧形成应变楔分别计算土压力。考虑实际土体的成层性,在被动侧土压力的计算考虑土体的成拱效应,传递到桩身上的应力以动态的应变楔向主动侧土体传递,建立桩土相互作用的整体平衡方程,并采用有限差分方法迭代求解,最后通过工程实例对该模型进行验证。

     

    Abstract: Numerical model is adopted to simulate the soil arching effect of passive piles due to the lateral displacement of soil and some results of soil arching effect of passive piles are obtained. Based on the soil movement and stress transfer approach, soil pressure of the passive piles is calculated considering the soil arching effect at the passive side of piles and active wedge model at the active side of piles. Considering the real soil layer and soil arching effect in the passive side of piles and the stress transfer of pile shaft into the soil by means of dynamic strain wedge at the active side of piles, a global equilibrium equation is established and solved by use of the finite difference method. Finally, the proposed method is verified by an engineering example.

     

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