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MECHANICAL BEHAVIOR OF PILE FOUNDATION CONSTRUCTED IN COMPOSITE GROUND AND ITS EVALUATION

机译:复合地基中桩基础的力学行为及其评价

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This paper describes a foundation design method in which the ground is improved around the heads of pile foundations in soft ground or loose sandy ground and its practical effectiveness. The shear strength increased due to ground improvement is reflected in the horizontal resistance of piles. In this design method, the influence range of the horizontal resistance of piles and the necessary range of ground improvement are determined by taking account of three-dimensional domain formed with the gradient of the surface of passive failure. The horizontal subgrade reaction of piles is evaluated by converting the shear strength of improved ground to the modulus of deformation. In this study, the validity of design method for the pile foundation with ground improvement was confirmed through an in-situ horizontal loading test. The dynamic behavior of pile foundation constructed in improved ground was also investigated through a series of centrifuge model tests and numerical analyses. The influence of the difference in strength between the original and improved grounds on piles during an earthquake was also confirmed based on the numerical analyses. The cost performance of the proposed method was discussed by comparing with the case without ground improvement.
机译:本文介绍了一种在软土地基或疏松沙质基础上对桩基础周围的地面进行改良的地基设计方法及其实际效果。由于地面改善而增加的抗剪强度反映在桩的水平阻力中。在这种设计方法中,考虑到被动破坏表面的坡度所形成的三维区域,确定了桩的水平阻力的影响范围和地面修整的必要范围。通过将改良土地的抗剪强度转换为变形模量来评估桩的水平路基反应。在这项研究中,通过现场水平荷载试验确定了具有地基改良效果的桩基设计方法的有效性。通过一系列的离心模型试验和数值分析,还研究了在改良地面上建造的桩基的动力特性。基于数值分析,还确定了地震时原地与改良地之间的强度差异对桩的影响。通过与不进行地面改进的情况进行比较,讨论了该方法的成本性能。

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