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Structural response reduction using tuned mass damper with semi-active control.

机译:使用带有半主动控制的调谐质量阻尼器来减少结构响应。

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摘要

A semi-active control scheme is developed for improving the performance of tuned mass dampers (TMD) without the requirement of a high power supply. The application of using a hydraulic device "functional switch" as a central feature of the control scheme is derived and experimentally verified. A practical application is numerically demonstrated by a case study of a real high-rise building originally equipped with passive TMD.;The TMD is a practical solution in the area of structural response control for high-rise buildings. It is a cost-effective technology for reduction of wind induced vibrations. The vibration level in an entire building can be greatly reduced by placing a single TMD at a single selected position in the structure. As more high-rise buildings are erected, the number of TMD applications is steadily increasing. However, the limit of performance for passive TMD, which contains only the mass, linear springs, and viscous dampers, is usually set by the size of the mass. Using an Active Mass Damper (AMD) can overcome this limit and provide more options on optimization for designers to consider. It can handle more complicated dynamic load cases, structural configurations, and functional requirements of the structure. Yet, mechanical complexity, high cost, and high power requirement are concerns on deciding which system to use. It is highly desirable that a system be capable of achieving the performance of AMDs without inducing extra complexity and power consumption. To reduce or eliminate the above limitations becomes the motivation of this study on semi-active control schemes for controlling TMD's.;In this study, the special features of active control systems are examined and the desirable and achievable features for the semi-active system to imitate are identified that could be used to improve the performance of TMDs, It is the first attempt to improve TMDs by using passive forces. The system may be called "Semi-active TMD" (SATMD). The performance of such system is both theoretically and experimentally proven to be superior to that of passive TMDs, achieves minimal power consumption and has less complexity than active TMDs.;The case study of a real building equipped with a TMD not only demonstrates the engineering merits of the semi-active control of TMD, but also perceives better understanding on the dual applications under wind and earthquake loads.
机译:开发了一种半主动控制方案,以在不需要大功率电源的情况下提高调谐质量阻尼器(TMD)的性能。得出并通过实验验证了使用液压装置“功能开关”作为控制方案的主要特征的应用。通过对最初装有无源TMD的真实高层建筑的案例研究,以数值方式证明了其实际应用。TMD是高层建筑结构响应控制领域中的一种实用解决方案。这是一种降低风引起的振动的经济有效的技术。通过将单个TMD放置在结构中的单个选定位置,可以大大降低整个建筑物的振动水平。随着越来越多的高层建筑的建立,TMD应用程序的数量正在稳步增加。但是,仅包含质量块,线性弹簧和粘性阻尼器的无源TMD的性能极限通常由质量块大小决定。使用有源质量阻尼器(AMD)可以克服此限制,并为设计人员提供更多的优化选择。它可以处理更复杂的动态载荷工况,结构配置以及结构的功能要求。然而,机械复杂性,高成本和高功率要求是决定使用哪个系统的关注。非常需要一种能够在不引起额外复杂性和功耗的情况下实现AMD性能的系统。减少或消除上述限制成为本研究用于控制TMD的半主动控制方案的动机。在本研究中,研究了主动控制系统的特殊功能,并研究了半主动系统的理想和可实现的功能。模仿物被认为可以用来改善TMD的性能,这是通过使用被动力来改善TMD的首次尝试。该系统可以称为“半主动TMD”(SATMD)。该系统的性能在理论上和实验上均被证明优于无源TMD,与有源TMD相比,具有最低的功耗和更小的复杂性。在一台装有TMD的真实建筑物的案例研究不仅证明了工程优势对TMD的半主动控制的理解,还可以更好地理解风和地震载荷下的双重应用。

著录项

  • 作者

    Shen, Jia-Dzwan Jerry.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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