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THE AGED RELOADING RESPONSE OF PILES IN CLAY

机译:黏土中桩的老化荷载响应

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摘要

It is known that the axial capacity of a displacement piles installed in clay varies with time. Consolidation theory suggests that dissipation of porewater pressure set-up during pile installation would lead to increased effective stress and hence higher pile resistance. In recent years a number of case histories have reported time dependent capacity increases for piles installed in sand. Although there is some debate regarding the physical mechanisms controlling this phenomenon, known as ageing, it is unrelated to pore pressure dissipation as piles in sand are installed in primarily drained conditions. A series of field tests designed to investigate ageing effects in soft clay are presented in this paper. Full-scale load tests on 6m long 250 mm square concrete piles, which were driven into soft clay are described. The piles were first tested approximately 100 days after installation, at which stage full equalization of the excess pore pressures had occurred. Static load tests were then performed up to 10 years after pile installation. The piles exhibited significant ageing, with their shaft resistance increasing by up to 66% over a 10 year period. Possible mechanisms for such aging characteristics are explored.
机译:已知安装在粘土中的位移桩的轴向容量随时间变化。固结理论表明,桩安装过程中孔隙水压力设置的散布将导致有效应力增加,从而导致桩阻力更高。近年来,许多案例记录都报告了安装在沙子中的桩的时间依赖于容量的增加。尽管关于控制这种现象的物理机制(存在老化)存在一些争论,但由于主要在排水条件下安装了沙子中的桩,因此它与孔隙压力的散发无关。本文提出了一系列旨在研究软土老化效应的现场测试。描述了在6m长的250 mm方形混凝土桩上进行的全面载荷试验,这些桩被打入软土中。在安装大约100天后首先对桩进行测试,在此阶段,已经完全平衡了多余的孔隙压力。然后在安装桩后长达10年的时间内进行静载荷测试。桩表现出明显的老化,其桩身阻力在10年内增加了66%。探索了这种老化特性的可能机制。

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