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Analytical solution for longitudinal vibration of a floating pile in saturated porous media based on a fictitious saturated soil pile model

机译:基于虚拟饱和土桩模型的饱和多孔介质浮桩纵向振动的分析解

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摘要

Based on Biot's theory of wave propagation in saturated porous media, a new analytical approach for the vertical vibration of a floating pile in saturated viscoelastic soil is proposed, by combining the differential operator method with a fictitious saturated soil pile (FSSP) model. As an extended fictitious soil pile model, the FSSP model can fully consider the wave propagation in saturated soil with limit thickness beneath pile toe. The analytical solution for the velocity admittance of pile head is derived by introducing the completely coupled conditions at the pile-soil interface. The accuracy of the proposed approach and relevant solutions are degenerated and subsequently verified via comparisons with previous solutions. In addition, comparative analyses are further carried out to examine the effects of the porosity and shear modulus of soil as well as the layer thickness of the saturated soil layer beneath pile toe on the dynamic behavior of the floating pile. It is indicated that the presented approach and relevant solutions provide a more wide-ranging application for vertical vibration problems of a floating pile in saturated soil, which can be degenerated for the vertical vibration problems of a floating pile in single-phase soil or an end-bearing pile in saturated soil.
机译:基于Biot的饱和多孔介质中的波传播理论,提出了一种新的分析方法,用于饱和粘弹性土壤中浮桩的垂直振动,采用虚拟饱和土桩(FSSP)模型。作为扩展虚拟土桩模型,FSSP模型可以充分考虑饱和土壤中的饱和土中的波传播,桩脚趾下限厚度。通过在桩土界面处引入完全耦合的条件来导出桩头速度纳入的分析解决方案。所提出的方法和相关解决方案的准确性是退化的,随后通过与先前解决方案的比较验证。此外,进一步进行比较分析,以检查土壤孔隙率和剪切模量的影响以及桩脚趾下方饱和土层的层厚度对浮桩的动态行为。结果表明,所提出的方法和相关解决方案为饱和土壤中浮桩的垂直振动问题提供了更广泛的应用,这对于单相土壤或末端浮桩的垂直振动问题可以退化 - 饱和土壤中的桩。

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