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One-dimensional modelling of pile jacking installation based on CPT tests in sand

机译:基于CPT砂土测试的顶桩安装一维建模

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The load-transfer (t-z or q-z) curve method has been widely used for prediction of the load-settlement relationship of piles subject to axial loads because of its simplicity and good convergence. However, few studies have focused on the pile installation and friction fatigue. With this consideration, the present study develops a large-displacement t-z curve which describes the degradation of shaft friction as a function of accumulated displacement. A one-dimensional numerical analysis technique using a q-z spring and a series of t-z soil springs is proposed for simulation of the jacking installation process of a large-displacement pile. The q-z curve and the parameters of the t-z curve can be obtained by cone penetration tests. The t-z spring of each soil layer can be broken away from the lower pile node beyond the layer range and reconnected to the upper pile node with the displacement of the springs accumulated continuously. Two case studies are presented to validate the applicability of the jacked pile model. Results show that the developed model can satisfactorily simulate the axial load and shaft friction of the pile during jacked installation. It can be concluded that the amount of cyclic displacement resulting from the unloading has a significant effect on the installation resistance, which is ignored by the existing design method.
机译:载荷传递(t-z或q-z)曲线方法因其简单性和良好的收敛性而被广泛用于预测承受轴向载荷的桩的载荷-沉降关系。但是,很少有研究集中在桩的安装和摩擦疲劳上。考虑到这一点,本研究开发了一个大位移的t-z曲线,该曲线描述了轴摩擦的退化与累积位移的关系。提出了一种使用q-z弹簧和一系列t-z土弹簧的一维数值分析技术,以模拟大位移桩的顶进安装过程。 q-z曲线和t-z曲线的参数可以通过锥入度测试获得。每个土层的t-z弹簧可以从下部桩节点突破,超出层范围,并通过不断累积的弹簧位移重新连接到上部桩节点。提出了两个案例研究来验证顶桩模型的适用性。结果表明,所开发的模型可以较好地模拟顶进安装过程中桩的轴向载荷和桩身的摩擦力。可以得出结论,卸载引起的循环位移量对安装阻力有很大影响,而现有的设计方法却忽略了这一点。

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