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An Empirical Method for Analysis of Load Transfer and Settlement of Single Piles

机译:单桩荷载传递与沉降分析的经验方法

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摘要

An empirical method is developed for estimating the load transfer and deformation of drilled, in situ formed piles subjected to axial loading. Firstly, governing equations for soil–pile interaction are developed theoretically, taking into account spatial variations in: (a) shaft resistance distribution and (b) ratio of load sharing between the shaft and base. Then generic load transfer models are formulated based on examination of data from 10 instrumented test piles found in the literature. The governing equations and load transfer models are then combined and appropriate boundary conditions defined. Using an incremental-iterative algorithm whereby all the boundary conditions are satisfied simultaneously, a numerical scheme for solving the combined set of equations is developed. The algorithm is then developed into an interactive computer program, which can be used to predict the load-settlement and axial force distribution in piles. To demonstrate its validity, the program is used to analyse four published case records of test piles, which other researchers had analysed using the following three computationally demanding tools: (a) load transfer (t–z), (b) finite difference and (c) finite element methods. It is shown that the proposed method which is much less resource-intensive, predicts both the load-settlement variation and axial force distribution more accurately than methods: (a–c) above.
机译:开发了一种经验方法,用于估计承受轴向载荷的原位钻孔桩的载荷传递和变形。首先,理论上考虑了以下方面的空间变化,建立了土-桩相互作用的控制方程:(a)轴的阻力分布和(b)轴与基座之间的载荷分担比率。然后,根据对文献中发现的10个仪器测试桩的数据进行检查,制定通用的载荷传递模型。然后将控制方程式和载荷传递模型组合在一起,并定义适当的边界条件。使用同时满足所有边界条件的增量迭代算法,开发了一种求解组合方程组的数值方案。然后将该算法开发为交互式计算机程序,该程序可用于预测桩中的载荷沉降和轴向力分布。为了证明其有效性,该程序用于分析四个已发布的测试桩案例记录,其他研究人员使用以下三个计算要求很高的工具对其进行了分析:(a)载荷传递(t–z),(b)有限差和( c)有限元方法。结果表明,与上面的方法(a–c)相比,所建议的方法耗费的资源少得多,可以更准确地预测载荷-沉降变化和轴向力分布。

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