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Mitigation of wind-induced vibrations of bridge hangers using tuned mass dampers with eddy current damping

机译:使用带涡流阻尼的调谐质量阻尼器减轻桥架的风致振动

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摘要

To mitigate vibrations, timed mass dampers (TWID) are widely used for long span bridges or high-rise buildings. Due to some durability concerns, such as fluid degradation, oil leakage, etc., the alternative solutions, such as the non-contacted eddy current damping (ECD), are proposed for mechanical devices in small scales. In the present study, a new eddy current damping TMD (ECD-TMD) is proposed and developed for large scale civil infrastructure applications. Starting from parametric study on finite element analysis of the ECD-TMD, the new design is enhanced via using the permanent magnets to eliminate the power need and a combination of a copper plate and a steel plate to improve the energy dissipation efficiency. Additional special design includes installation of two permanent magnets at the same side above the copper plate to easily adjust the gap as well as the damping. In a case study, the proposed ECD-TMD is demonstrated in the application of a steel arch bridge to mitigate the wind-induced vibrations of the flexible hangers. After a brief introduction of the configuration and the installation process for the damper, the mitigation effects are measured for the ambient vibration and forced vibration scenarios. The results show that the damping ratios increase to 3% for the weak axis after the installation of the ECD-TMDs and the maximum vibration amplitudes can be reduced by 60%.
机译:为了减轻振动,定时质量阻尼器(TWID)被广泛用于大跨度桥梁或高层建筑。由于一些耐用性问题,例如流体降解,漏油等,对于小型机械设备,提出了替代解决方案,例如非接触式涡流阻尼(ECD)。在本研究中,提出并开发了一种用于大型民用基础设施的新型涡流阻尼TMD(ECD-TMD)。从对ECD-TMD的有限元分析进行参数研究开始,通过使用永磁体消除功率需求并结合使用铜板和钢板来提高能量消耗效率,对新设计进行了改进。额外的特殊设计包括在铜板上方的同一侧安装两个永磁体,以轻松调节间隙和阻尼。在一个案例研究中,建议的ECD-TMD在钢拱桥的应用中得到了证明,以减轻柔性衣架在风中引起的振动。在简要介绍了阻尼器的配置和安装过程之后,针对环境振动和强制振动情况测量了缓解效果。结果表明,安装ECD-TMD后,弱轴的阻尼比增加到3%,最大振动幅度可以降低60%。

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