自动检测对大直径钻孔灌注桩动力响应的影响

Hongsheng Wu, Yong Liu, HuiMin Cai, Yuedong Wu, Jian Liu
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引用次数: 0

摘要

信息是智慧水利的基础,必须高度重视信息的收集、监测和分析;知识是智慧水利的核心,必须运用新的信息技术,加强信息的挖掘、提取和知识的积累。分析了自动检测对大直径钻孔灌注桩动力响应的影响。首先,将泥沙视为虚拟土桩,引入瑞利-洛夫杆理论,建立桩和虚拟土桩的纵向动力控制方程,近似考虑桩的三维效应;然后,基于三维轴对称模型,建立了周边土体的动力控制方程。采用拉普拉斯变换、阻抗函数递推和傅立叶反变换等方法,对桩-土系统的动力控制方程进行求解,得到桩动力响应的频域和时域解。在建立的解的基础上,进行参数敏感性分析,刻画大直径钻孔灌注桩的三维效应,以及泥沙厚度、密度和纵波速度对桩动力响应的影响。最后,通过与实测结果的比较,验证了所提方案的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Automatic Detection on the Dynamic Response of the Large Diameter Bored Pile
Information is the foundation of smart water conservancy, and we must attach great importance to the collection, monitoring and analysis of information; knowledge is the core of smart water conservancy, and new information technology must be applied to strengthen information mining, extraction and knowledge accumulation. The influence of automatic detection on the dynamic response of the large diameter bored pile is analyzed in this study. First, the sediment is considered as a fictitious soil pile and the Rayleigh-Love rod theory is introduced to establish the longitudinal dynamic governing equations for the pile and the fictitious soil pile to approximately consider the three-dimensional effect of the pile. Then, the dynamic governing equation for the surrounding soil is built based on the three-dimensional axisymmetric model. By means of Laplace transform, impedance function recursion and inverse Fourier transform, the dynamic governing equations for the soil-pile system are solved to derive the solution for dynamic response of the pile in the frequency and time domain. Based on the established solution, parameter sensitivity analysis is carried out to portray the three-dimensional effect of the large diameter bored pile and the influence of the thickness, density and longitudinal wave velocity of the sediment on the dynamic response of the pile. Finally, the reliability of the proposed solution is verified by comparing with the measured result.
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