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基于TMDI的大跨度桥梁颤振控制理论研究
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Flutter Control for Long-span Bridges with TMDI: A Theoretical Study
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    摘要:

    为解决传统调谐质量阻尼器(Tuned Mass Dampers, TMD)在低频大跨度桥梁中静位移过大的问题,提出采用调谐质量惯容阻尼器(Tuned Mass Damper Inerter, TMDI)提高大跨度桥梁的颤振临界风速. 提出了一种适用于桥梁颤振控制的TMDI布置形式,并基于二维耦合颤振理论,建立桥梁-TMDI系统运动微分方程,进而导出系数多项式特征方程. 根据劳斯-赫尔维茨稳定性判据,计算颤振临界风速. 以具有理想平板断面的简支梁为例,分析TMDI在桥梁颤振控制方面的有效性,并探讨了TMDI各参数设置对颤振控制的影响. 研究结果表明,TMDI可以有效提高桥梁颤振临界风速. 与传统TMD相比,虽然引入惯容可能会稍微削弱其控制效果,但却可以大幅降低质量块静位移,从而在实际工程中具有更高的实用价值.

    Abstract:

    To address the issue of excessive static displacement in traditional Tuned Mass Dampers (TMD) for low-frequency and long-span bridges, this study introduces the implementation of a Tuned Mass Damper Inerter (TMDI) to increase flutter critical wind speed in such structures. This paper presents a TMDI configuration specifically designed for bridge flutter control and, based on a two-dimensional coupled flutter theory, develops the motion differential equation for the bridge-TMDI system, subsequently deriving the coefficient polynomial characteristic equation. Utilizing the Routh–Hurwitz stability criterion, the flutter critical wind speed is determined. A simply supported beam with an ideal planar cross-section serves as a case study to evaluate the efficacy of TMDI in bridge flutter control and to explore the influence of various TMDI parameter settings on flutter control. The findings reveal that TMDI can effectively increase the bridge flutter critical wind speed. Compared with the traditional TMD, the integration of an inerter may have a minor impact on reducing the control effect; however, it can notably decrease the static displacement of the mass block, thus offering great practical value in real-world engineering applications.

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FENG Zhouquan?,WU Qiangqiang, CHEN Zhi, LIU Qiming, LI Cong, HUA Xugang.基于TMDI的大跨度桥梁颤振控制理论研究[J].湖南大学学报:自然科学版,2023,(11):45~52

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  • 在线发布日期: 2023-12-04
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