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Longitudinal vibration of a pile embedded in layered soil considering the transverse inertia effect of pile

机译:考虑桩的横向惯性效应的层状土中桩的纵向振动

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摘要

The dynamic response of a viscoelastic bearing pile embedded in multilayered soil is theoretically investigated considering the transverse inertia effect of the pile. The soil layers surrounding the pile are modeled as a set of viscoelastic continuous media in three-dimensional axisymmetric space, and a simplified model, i.e., the distributed Voigt model, is proposed to simulate the dynamic interactions of the adjacent soil layers. Meanwhile, the pile is assumed to be a Rayleigh-Love rod with material damping and can be divided into several pile segments allowing for soil layers and pile defects. Both the vertical and radial displacement continuity conditions at the soil-pile interface are taken into account. The potential function decomposition method and the variable separation method are introduced to solve the governing equations of soil vibration in which the vertical and radial displacement components are coupled. On this basis, the impedance function at the top of the pile segment is derived by invoking the force and displacement continuity conditions at the soil-pile interface as well as the bottom of pile segment. The impedance function at the pile head is then obtained by means of the impedance function transfer method. By means of the inverse Fourier transform and convolution theorem, the velocity response in the time domain can also be obtained. The reasonableness of the assumptions of the soil-layer interactions have been verified by comparing the present solutions with two published solutions and a set of well-documented measured pile test data. A parametric analysis is then conducted using the present solutions to investigate the influence of the transverse inertia effect on the dynamic response of an intact pile and a defective pile for different design parameters of the soil-pile system.
机译:理论上考虑了桩的横向惯性效应,研究了埋在多层土中的粘弹性轴承桩的动力响应。将桩周围的土层建模为三维轴对称空间中的一组粘弹性连续介质,并提出了一种简化的模型(即分布式Voigt模型)来模拟相邻土层的动力相互作用。同时,假定桩为具有材料阻尼的Rayleigh-Love杆,并且可以分为几个桩段,以考虑土层和桩缺陷。同时考虑了土-桩界面的垂直和径向位移连续性条件。引入势函数分解法和变量分离法,求解了垂直位移和径向位移耦合的土壤振动控制方程。在此基础上,通过调用土桩界面以及桩段底部处的力和位移连续性条件,可以得出桩段顶部的阻抗函数。然后,通过阻抗函数传递方法获得桩头处的阻抗函数。通过逆傅立叶变换和卷积定理,也可以得到时域的速度响应。通过将本解决方案与两个已发布的解决方案以及一组有据可查的测得的桩测数据进行比较,已验证了土层相互作用假设的合理性。然后使用本发明的解决方案进行参数分析,以研究横向惯性效应对完整的桩和有缺陷的桩针对土桩系统不同设计参数的动力响应的影响。

著录项

  • 来源
    《Computers and Geotechnics》 |2014年第10期|90-99|共10页
  • 作者单位

    MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Zhejiang University, Hangzhou, Zhejiang 310058, China;

    MOE Key Laboratory of Soft Soils and Geoenvironmental Engineering, Zhejiang University, Hangzhou, Zhejiang 310058, China,Research Center of Coastal and Urban Geotechnical Engineering, Zhejiang University, Hangzhou 310058, China;

    Engineering Faculty, China University of Geosciences, Wuhan, Hubei 430074, China;

    School of Computing, Engineering and Mathematics, University of Western Sydney, Locked Bag 1797, Penrith, Sydney, NSW 2751, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Viscoelastic bearing piles; Transverse inertia effect; Layered soil; Longitudinal vibration; Pile defect; Velocity response;

    机译:粘弹性轴承桩;横向惯性效应;层状土壤;纵向振动;桩缺陷速度响应;

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