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Theoretical and experimental study on cable vibration reduction with a TMD-MR damper.

机译:用TMD-MR阻尼器减少电缆振动的理论和实验研究。

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摘要

Stay cables are vulnerable to dynamic excitations because of their low intrinsic damping. Excessive cable vibrations cause frequent maintenance and are detrimental to the safety of the entire bridge. Targeting the severe cable vibration problem, in addition to using the existing Magnetorheological (MR) damper, the current study proposes a new type of damper, called the Tuned Mass Damper-Magnetorheological (TMD-MR) damper. Theoretical and experimental investigations for the damper performance on the cable vibration reduction are conducted, which provides the necessary research support for practical implementation.; Experiments on the individual MR damper are carried out first to gain some experience on the damper itself. The MR damper is then added to the cable to demonstrate its effectiveness for vibration reduction, both passively and semiactively. Based on the obtained information, a TMD-MR damper is manufactured according to the vibration level of the experimental cable. The designed TMD-MR damper is then added to the experimental cable, and possible factors that may affect the damper performance are investigated experimentally. To get a profound and extended understanding of the TMD-MR damper performance, a simple horizontal taut cable-damper model, and then a more refined analytical model for the inclined sagged cable-TMD-MR system, are established. Through a parametric study on the achieved modal damping of the system, a thorough investigation on the effect of the cable or the damper parameters on the TMD-MR damper performance is carried out. The design process of the damper for the rain-wind induced cable vibration reduction is also explained based on the parametric study. Though this study focuses on the research of the proposed TMD-MR damper, the viscous damper is also considered for comparison purposes.; The present research demonstrates not only that semiactive control is more efficient than the passive control, but also that MR dampers are failure-free devices for vibration control since their passive mode provides damping too. The proposed TMD-MR damper combines the flexibility of the TMD damper and the adjustability of the MR damper, and therefore is a promising way to reduce the cable vibration, though further research is necessary to warrant field applications.
机译:斜拉电缆的固有阻尼低,因此容易受到动态激励的影响。过度的电缆振动会导致频繁的维护,并且不利于整个桥的安全。针对严重的电缆振动问题,除了使用现有的磁流变(MR)阻尼器外,当前的研究还提出了一种新型阻尼器,称为调谐质量阻尼器-磁流变(TMD-MR)阻尼器。对减振器的减振性能进行了理论和实验研究,为实际实施提供了必要的研究支持。首先对单个MR阻尼器进行实验,以获取有关阻尼器本身的一些经验。然后将MR阻尼器添加到电缆中,以证明其在被动和半主动式减振方面的有效性。根据获得的信息,根据实验电缆的振动水平来制造TMD-MR阻尼器。然后将设计好的TMD-MR阻尼器添加到实验电缆中,并通过实验研究可能影响阻尼器性能的可能因素。为了深入了解TMD-MR阻尼器性能,建立了一个简单的水平拉紧式电缆阻尼器模型,然后建立了用于倾斜下垂电缆-TMD-MR系统的更精细的分析模型。通过对系统实现的模态阻尼的参数研究,对电缆或阻尼器参数对TMD-MR阻尼器性能的影响进行了深入研究。在参数研究的基础上,还解释了用于减少雨风引起的电缆振动的阻尼器的设计过程。尽管本研究着重于建议的TMD-MR阻尼器的研究,但出于比较目的也考虑了粘性阻尼器。本研究表明,不仅半主动控制比被动控制更有效,而且MR阻尼器是用于振动控制的无故障设备,因为它们的被动模式也提供阻尼。提出的TMD-MR阻尼器结合了TMD阻尼器的灵活性和MR阻尼器的可调节性,因此是减少电缆振动的一种有前途的方法,尽管需要进行进一步的研究以保证现场应用。

著录项

  • 作者

    Wu, Wenjie.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Engineering Civil.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:39:48

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