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刘浩, 蒋国盛, 梅国雄, 梁荣柱, 吴文兵. 基于附加质量模型的管桩扭转振动研究[J]. 岩土工程学报, 2018, 40(4): 716-725. DOI: 10.11779/CJGE201804016
引用本文: 刘浩, 蒋国盛, 梅国雄, 梁荣柱, 吴文兵. 基于附加质量模型的管桩扭转振动研究[J]. 岩土工程学报, 2018, 40(4): 716-725. DOI: 10.11779/CJGE201804016
LIU Hao, JIANG Guo-sheng, MEI Guo-xiong, LIANG Rong-zhu, WU Wen-bing. Torsional dynamic response of pipe piles based on additional mass model[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(4): 716-725. DOI: 10.11779/CJGE201804016
Citation: LIU Hao, JIANG Guo-sheng, MEI Guo-xiong, LIANG Rong-zhu, WU Wen-bing. Torsional dynamic response of pipe piles based on additional mass model[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(4): 716-725. DOI: 10.11779/CJGE201804016

基于附加质量模型的管桩扭转振动研究

Torsional dynamic response of pipe piles based on additional mass model

  • 摘要: 基于附加质量模型研究了管桩的扭转振动特性,为管桩的无损检测、动力基础设计和抗震设计提供了新的理论依据。首先,推导出管桩桩顶复刚度和速度频域响应解析解及半正弦脉冲激振力作用下桩顶速度时域响应半解析解;然后将该文解与经典的平面应变解进行对比,验证本文解的合理性;最后分析土塞高度和土塞与管桩之间的阻尼作用对管桩扭转振动特性的影响。分析表明:土塞高度和土塞与管桩之间的阻尼作用是影响管桩扭转复刚度的重要因素;随着土塞高度的增加和土塞与管桩之间阻尼作用的增强,填充土塞段管桩的扭转综合波速会逐渐减小。

     

    Abstract: The torsional dynamic response of pipe piles is investigated based on the additional mass model. It can provide a new theoretical basis for non-destructive integrity testing of pipe piles, design of dynamic foundation and earthquake-resistant design. First, the analytical solutions for complex stiffness and velocity response in the frequency domain and the corresponding quasi-analytical solutions for velocity response in the time domain at pile head are derived. Then, the rationality and accuracy of the solutions are verified by comparing the dynamic behaviors of the pipe piles calculated by the additional mass model with those based on the plane strain model. Finally, the influences of the soil plug height and the damping effect between soil plugs and pipe piles on the torsional dynamic response of pipe piles are analyzed. The results show that the soil plug height and the damping effect between soil plugs and pipe piles have an important influence on the torsional complex stiffness of pipe piles. The test torsional velocity of pipe pile decreases as the soil plug height and the damping effect between soil plugs and pipe piles increase.

     

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