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赵明华, 邹新军, 罗松南, 邹银生. 横向受荷桩桩侧土体位移应力分布弹性解[J]. 岩土工程学报, 2004, 26(6): 767-771.
引用本文: 赵明华, 邹新军, 罗松南, 邹银生. 横向受荷桩桩侧土体位移应力分布弹性解[J]. 岩土工程学报, 2004, 26(6): 767-771.
ZHAO Minghua, ZOU Xinjun, LUO Songnan, ZOU Yinsheng. Elastic analytic solution to the displacement and stress distribution in the soil around laterally loaded piles[J]. Chinese Journal of Geotechnical Engineering, 2004, 26(6): 767-771.
Citation: ZHAO Minghua, ZOU Xinjun, LUO Songnan, ZOU Yinsheng. Elastic analytic solution to the displacement and stress distribution in the soil around laterally loaded piles[J]. Chinese Journal of Geotechnical Engineering, 2004, 26(6): 767-771.

横向受荷桩桩侧土体位移应力分布弹性解

Elastic analytic solution to the displacement and stress distribution in the soil around laterally loaded piles

  • 摘要: 基于桩土共同工作机理推导出横向受荷桩桩侧土体内位移与应力分布的弹性解析解,可用于分析土体中某点在水平力作用下位移及应力应变的变化规律。根据土体变形模量与位移的近似关系获得桩侧地基土体的模量分布与加权模量,将其用于有限元–有限层法进行横向受荷桩的受力变形分析,可近似考虑土体的非均质与非线性等特性,并编制出计算程序。最后,结合工程实例讨论了不同桩侧土体变形模量分布模式对桩身内力变形的影响规律。对比分析结果表明,基于地基加权刚度的有限元–有限层法能更合理地分析桩土共同工作。

     

    Abstract: Based on mechanism of pile-soil interaction, an elastic analytic solution to determine the displacement and stress distribution in the soil around laterally loaded piles is derived in this paper. The solution can be used to find out the variation of displacement, stress and strain in the soil under horizontal loads. Then, according to the empirical relation between soil deformation modulus and displacement, the modulus distribution in the soil around the pile shaft and weighted modulus are obtained approximately. By introducing the weighted modulus to the current finite element-finite layer method, the weighted stiffness matrix of foundation is set up with a program worked out as well, which can consider the influence of the non-homogeneity and nonlinear characteristic of the soil around the pile shaft. Finally, combined with an engineering example, the effect of different soil modulus on the internal forces and deformation along pile shaft is discussed. The results show that, it is more reasonable for pile-soil interaction analysis to adopt weighted foundation stiffness in the finite element-finite layer method.

     

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