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Using multiple tuned mass dampers to control offshore wind turbine vibrations under multiple hazards

机译:使用多重调谐质量阻尼器控制多种危害下的海上风机振动

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摘要

Offshore wind turbines can be built larger and lighter than they used to be due to the application of new materials. These large and flexible structures are vulnerable to external vibration sources such as wind, sea wave and earthquake excitations. It is necessary to mitigate the dynamic responses of offshore wind turbines to ensure the safety of these structures. Extensive research works have been carried out to mitigate the vibrations of the tower and/or blades of offshore wind turbines. Almost all the previous studies on the offshore wind turbine tower vibration control propose installing the control device at the top of the tower, i.e. in the nacelle. This method is effective to suppress the fundamental vibration mode of the tower, in which the maximum displacement occurs at the top of the tower. This practice is reasonable when wind and/or sea wave loadings are of interest since the energies of these vibration sources are concentrated in the low frequency range, and normally only the fundamental vibration mode of the tower is excited. On the other hand, offshore wind turbines may locate in the seismic prone areas, earthquake loading can be another vibration source during their lifetimes. When offshore wind turbines are subjected to earthquake excitation, higher vibration modes might be also excited. These higher vibration modes can further contribute to the structural responses and in certain circumstances they may even dominate the structural responses. In this case, installing the control device only in the nacelle will not be effective and more control devices should be installed at certain locations along the tower. In other words, one single control device will not be effective to control the tower vibrations if both the fundamental and higher vibration modes are of interest. This paper proposes using multiple tuned mass dampers (MTMDs) to control vibrations from the fundamental and higher modes of offshore wind turbine tower under multiple hazards, i.e. under the combined wind, sea wave and earthquake excitations. The effectiveness of the proposed method is numerically investigated. It should be noted that only the vibration of the tower is of interest in the present study. The vibration control of the blades is out of the scope of this paper, which will be further investigated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于采用了新材料,海上风力涡轮机的体积和重量可以比以前更大,更轻。这些大型且灵活的结构易受外部振动源(例如风,海浪和地震激发)的影响。有必要减轻海上风力发电机的动态响应,以确保这些结构的安全性。为了减轻海上风力涡轮机的塔架和/或叶片的振动,已经进行了广泛的研究工作。先前关于海上风力涡轮机塔架振动控制的几乎所有研究都提出将控制装置安装在塔架的顶部,即机舱中。这种方法有效地抑制了塔架的基本振动模式,其中最大位移发生在塔架的顶部。当风和/或海浪载荷受到关注时,这种做法是合理的,因为这些振动源的能量集中在低频范围内,并且通常仅激发塔的基本振动模式。另一方面,海上风力涡轮机可能位于地震多发地区,地震载荷可能是其生命周期内的另一个振动源。当海上风力涡轮机受到地震激励时,可能还会激发更高的振动模式。这些较高的振动模式可以进一步有助于结构响应,在某些情况下,它们甚至可以主导结构响应。在这种情况下,仅将控制设备安装在机舱中是无效的,应在塔架的某些位置安装更多的控制设备。换句话说,如果同时关注基本振动模式和较高振动模式,则一个单独的控制设备将无法有效控制塔架振动。本文提出了使用多重调谐质量阻尼器(MTMD)在多种危害(即风,海浪和地震激励组合)下控制海上风力发电机塔架基本模式和更高模式的振动的方法。数值研究了所提方法的有效性。应该注意的是,在本研究中仅关注塔架的振动。叶片的振动控制超出了本文的范围,将对此进行进一步的研究。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Engineering Structures》 |2017年第15期|303-315|共13页
  • 作者

    Zuo Haoran; Bi Kaiming; Hao Hong;

  • 作者单位

    Curtin Univ, Ctr Infrastruct Monitoring & Protect, Sch Civil & Mech Engn, Kent St, Bentley, WA 6102, Australia;

    Curtin Univ, Ctr Infrastruct Monitoring & Protect, Sch Civil & Mech Engn, Kent St, Bentley, WA 6102, Australia;

    Curtin Univ, Ctr Infrastruct Monitoring & Protect, Sch Civil & Mech Engn, Kent St, Bentley, WA 6102, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MTMDs; Vibration control; Offshore wind turbine; Multiple hazards;

    机译:MTMD;振动控制;海上风力发电机;多重危害;

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