考虑周围土壤圆周支撑的锥形桩的扭转振动

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-05 DOI:10.1680/jgeen.23.00102
Zhenya Li, Xianbin He, Chiheng Zhao, Yuqian Xi, Cun Zhang
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引用次数: 0

摘要

在研究锥形桩的扭转动力特性时,由于其横截面可变,通常会将其沿垂直方向分成有限的几段。然而,由于半径不同,相邻桩段的接触面会形成一个环形凸起,周围土壤会通过该凸起对桩段施加周向支撑。本研究采用 Voigt 模型来模拟周围土壤对环形凸起的圆周支撑。在此基础上,结合相邻桩段接触面的圆周应力平衡方程和圆周位移连续性条件,建立了修正的阻抗函数传递方法。采用剪切复刚度传递法来考虑桩安装过程中的施工扰动。然后,通过求解土壤和桩的方程,建立了考虑周围土壤圆周支撑的锥形桩扭转振动的改进分析方案。在此基础上,研究了锥形桩的扭转振动,并揭示了在不同桩参数和施工扰动条件下,周围土体圆周支撑的影响。
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Torsional vibration of a tapered pile considering circumferential support of surrounding soil
The tapered pile is usually divided into finite segments along the vertical direction due to its variable cross-section when investigating its torsional dynamic characteristics. However, an annular projection would be formed at the contact surface of the adjacent pile segments due to the difference in radius, through which the surrounding soil will apply the circumferential support on the pile segment. In this study, the Voigt model is adopted to model the circumferential support of the surrounding soil acting on the annular projection. On this basis, an amended impedance function transfer method is established combining with the circumferential stress equilibrium equations and circumferential displacement continuity conditions at the contact surface of the adjacent pile segments. The shear complex stiffness transfer method is employed to consider the construction disturbance during pile installation. Then, an improved analytical solution for the torsional vibration of the tapered pile considering the circumferential support of the surrounding soil is established by solving the equations for the soil and pile. Based on the solution, the torsional vibration of the tapered pile is investigated and the influence of the circumferential support of the surrounding soil is revealed under different pile parameters and construction disturbance conditions.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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