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Pile-Soil Interaction in Expansive Soil Foundation: Analytical Solution and Numerical Simulation

机译:膨胀土基础中桩-土相互作用:解析解和数值模拟

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摘要

Pile-soil interaction in an expansive soil foundation has been primarily analyzed by an analytical solution in our previous study. As a complementary work, this paper briefly reviews the derivation process in more detail and extends the capability of the solution in dealing with the pile-soil interaction issue under various conditions. The results show that (1) increasing pile length is able to effectively decrease the upward pile movements, but meanwhile, the tensile stresses along the pile shaft increase as well; (2) a critical pile diameter exists (d «s 0.04L); (3) when the diameter is less than this value, the upward pile movements can be reasonably reduced, but for the pile with a larger diameter, it has little effect on reducing the upward pile movements, and as irrigation proceeds, both the displacements and tensile stresses increase and both tend to be much less sensitive to the water's incoming over time; and (4) a critical applied pressure for preventing the upward pile movements that is induced by soil's swelling pressure is found to be 2.5 times of the maximum tensile stress of the free pile only under swelling pressure in expansive soil foundation.
机译:在我们先前的研究中,主要通过分析解决方案对膨胀土基础中的桩土相互作用进行了分析。作为补充工作,本文简要地简要回顾了推导过程,并扩展了解决方案在各种条件下处理桩土相互作用问题的能力。结果表明:(1)增加桩长可以有效地减少桩的向上运动,但同时沿桩身的拉应力也增加; (2)存在临界桩直径(d«s 0.04L); (3)当直径小于此值时,可以适当地减小桩的向上运动,但对于直径较大的桩,减小桩的向上运动几乎没有效果,并且随着灌溉的进行,位移和随着时间的推移,拉应力会增加,并且两者对水的流入都不太敏感。 (4)仅在膨胀土基础中,在膨胀压力下,防止由土壤膨胀压力引起的向上桩运动的临界施加压力是自由桩最大拉应力的2.5倍。

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  • 来源
    《International journal of geomechanics》 |2011年第3期|p.159-166|共8页
  • 作者单位

    Professor, College of Civil Engineering and Mechanics, Central South Univ. of Forestry and Technology, Shaoshan Road, 410004, China;

    Ph.D. Candidate, Geotechnical Engineering Center, Sydney Univ.,Darlington, NSW, 2006, Australia;

    Professor, School of Civil Engineering and Architecture, Central South Univ., Shaoshan Road, Changsha, 41007, China;

    Lecturer, School of Civil Engineering and Architecture, Central South Univ., Shaoshan Road, Changsha, 41007, China (corresponding author);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    expansive soil; shear deformation method; heave; parameter analysis.;

    机译:膨胀土剪切变形法鼓起参数分析。;

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