首页> 外文期刊>Journal of vibration and control: JVC >Optimizing tuned mass damper parameters to mitigate the torsional vibration of a suspension bridge under pulse-type ground motion: A sensitivity analysis
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Optimizing tuned mass damper parameters to mitigate the torsional vibration of a suspension bridge under pulse-type ground motion: A sensitivity analysis

机译:优化调谐质量阻尼参数,以减轻脉冲型地面运动下悬架桥的扭转振动:灵敏度分析

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摘要

Suspension bridges are structures that because of their long span and high flexibility can be prone to ambient vibrations such as ground motions. They can experience high amplitude vibrations in torsional mode during an earthquake, where a vibration control strategy seems necessary. Recently, control systems have been widely used to mitigate vibration of structures. Tuned mass damper is a passive control system. Its performance and effectiveness have been verified both theoretically and practically. In this study, a tuned mass damper system is used to mitigate the torsional vibration of a suspension bridge. The Vincent Thomas suspension bridge is selected as a case study, and its response is reduced by a tuned mass damper under ten pulse-type records from 10 major worldwide earthquakes. By using sensitivity analysis, a parametric study is carried out to optimize tuned mass damper parameters, namely, mass ratio, gyration radius, tuning frequency, and damping ratio according to the maximum reduction of the response maxima. Finally, the optimum range of each parameter that can give the best performance and provide both operational and economic justification for the implementation of the project is suggested. The numerical results indicate that the optimized tuned mass damper system can substantially reduce the maximum response and vibration time.
机译:悬架桥是结构的,因为它们的长跨度和高柔韧性可以容易产生诸如地面运动的环境振动。它们可以在地震期间体验扭转模式的高幅度振动,其中振动控制策略似乎是必要的。最近,控制系统已被广泛用于减轻结构的振动。调谐质量阻尼器是一种被动控制系统。其性能和有效性在理论上和实际上已经核实。在该研究中,调谐质量阻尼系统用于减轻悬架桥的扭转振动。文森特托马斯悬架桥被选为案例研究,其响应在全球10个主要地震的10个脉冲型记录下通过调谐质量阻尼器减少。通过使用灵敏度分析,执行参数研究以优化调谐质量阻尼参数,即质量比,循环半径,调谐频率和阻尼比,根据响应最大值的最大降低。最后,建议了每个参数的最佳范围,可以提供最佳性能并为项目实施提供操作和经济理由。数值结果表明优化的调谐质量阻尼系统可以大大降低最大响应和振动时间。

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