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Torsional dynamic impedance of a stepped pile based on the wedged soil model

机译:基于楔形土模型的阶梯桩的扭转动态阻抗

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Stepped piles have been increasingly used as foundation elements for bridges and soft ground improvement in China. This paper derives an analytical solution of the torsional impedance of a stepped pile based on a wedged soil model. The accuracy of the developed solution is verified by degenerating the stepped pile into a straight pile. A parametric study is then conducted to investigate the influence of the wedged soil boundary and geometrical parameters on the torsional impedance of the stepped pile. A comparison between the present solution and the solution of a Voigt model is also presented. The findings demonstrate that the wedged soil boundary has a substantially influence on the torsional impedance for stepped piles with a short and stout upper pile segment. The difference in torsional impedance between the wedged soil model and the Voigt model is mainly reflected at high frequencies, while in a low frequency range these two solutions are almost identical, which is greatly divergent from the results of a vertical vibration case.
机译:阶梯桩已越来越多地用作中国桥梁的基础元素和中国软化地改善。本文源于基于楔形土壤模型的阶梯桩扭转阻抗的分析解。通过将阶梯式桩退化为直桩来验证开发溶液的准确性。然后进行参数研究以研究楔形土边界和几何参数对阶梯桩扭转阻抗的影响。还提出了本发明的解决方案与VoIGT模型的溶液之间的比较。研究结果表明,楔形的土壤边界对具有短剑的上桩段的阶梯桩的扭转阻抗具有显着影响。楔形土壤模型与VoIGT模型之间的扭转阻抗差异主要在高频上反映,而在低频范围内,这两个解决方案几乎相同,这与垂直振动箱的结果大大发散。

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