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Experimental study on the dynamic behavior of laterally loaded single pile

机译:横向加载单桩动力特性的试验研究

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摘要

To improve the understanding of soil-pile interaction under horizontal dynamic loads and seismic events, a parametric centrifugal study was undertaken. Flexible piles with pile caps of different masses and instrumented with 20 strain gauges on the length of the pile were used for this purpose. The piles were impacted by a new horizontal impact device and the resulting displacement and acceleration for different levels of force were measured. The inherent basic parameters of soil-pile-interaction have been evaluated. An analysis of the damping in relation with depth and during vibration of pile is carried out. The equation of the movement of a beam equivalent to the pile under dynamic loading has been established and all the terms of this equation was determined using the experimental results. It shows that the value of internal damping of pile compared to other terms in the equation is insignificant. The term of inertia was divided into two parts, one related to the mass of the pile and the other related to the mass of the associated soil. The contribution of each term to the equation at different periods (or time of) of vibration was illustrated. Distribution versus time of the displacements and the reactions of the soil at any depth were deduced from the profiles of the bending moments by a double integration and a double derivation respectively. Then the dynamic P-y curves or loops were constructed based on these results. A static test has been performed with the same pile installed in the same conditions so that to obtain the static P-y curves. The procedures of experimental tests and P-y curves construction are explained and a comparison between static and dynamic P-y curves is also indicated. (C) 2014 Elsevier Ltd. All rights reserved.
机译:为了提高对水平动态载荷和地震事件下土-桩相互作用的理解,进行了参数离心研究。为此,使用了具有不同质量桩帽的柔性桩,并在桩长上配备了20个应变仪。桩受到新的水平冲击装置的冲击,并测量了不同力水平下的位移和加速度。评估了土桩相互作用的固有基本参数。进行了与深度和桩振动有关的阻尼分析。建立了在动态载荷下等效于桩的梁的运动方程,并使用实验结果确定了该方程的所有项。结果表明,与方程中的其他项相比,桩的内部阻尼值微不足道。惯性项分为两部分,一部分与桩的质量有关,另一部分与相关的土壤的质量有关。说明了在振动的不同周期(或时间)下每个项对方程的贡献。通过双积分和双导数分别从弯矩的分布图推导出在任何深度的位移的分布随时间的变化以及土壤的反作用。然后根据这些结果构建动态P-y曲线或回路。对在相同条件下安装的同一桩桩进行了静态测试,以便获得静态P-y曲线。解释了实验测试和P-y曲线构建的步骤,并指出了静态P-y曲线和动态P-y曲线之间的比较。 (C)2014 Elsevier Ltd.保留所有权利。

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