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Improved reliability of wind turbine towers with active tuned mass dampers (ATMDs)

机译:具有主动调谐质量阻尼器(ATMDS)的风力涡轮机塔的可靠性提高

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Modern multi-megawatt wind turbines are composed of slender, flexible, and lightly damped blades and towers. These components exhibit high susceptibility to wind-induced vibrations. As the size, flexibility and cost of the towers have increased in recent years, the need to protect these structures against damage induced by turbulent aerodynamic loading has become apparent. This paper combines structural dynamic models and probabilistic assessment tools to demonstrate improvements in structural reliability when modern wind turbine towers are equipped with active tuned mass dampers (ATMDs). This study proposes a multi-modal wind turbine model for wind turbine control design and analysis. This study incorporates an ATMD into the tower of this model. The model is subjected to stochastically generated wind loads of varying speeds to develop wind-induced probabilistic demand models for towers of modern multi-megawatt wind turbines under structural uncertainty. Numerical simulations have been carried out to ascertain the effectiveness of the active control system to improve the structural performance of the wind turbine and its reliability. The study constructs fragility curves, which illustrate reductions in the vulnerability of towers to wind loading owing to the inclusion of the damper. Results show that the active controller is successful in increasing the reliability of the tower responses. According to the analysis carried out in this paper, a strong reduction of the probability of exceeding a given displacement at the rated wind speed has been observed. (c) 2017 Elsevier Ltd. All rights reserved.
机译:现代多兆瓦风力涡轮机由细长,灵活,轻盈的刀片和塔组成。这些组件对风力诱导的振动表现出高易感性。随着近年来塔的尺寸,灵活性和成本增加,需要保护这些结构免受湍流空气动力载荷引起的损坏变得明显。本文结合了结构动态模型和概率评估工具,在现代风力涡轮机塔楼配备有源调谐质量阻尼器(ATMDS)时,展示结构可靠性的改进。本研究提出了一种用于风力涡轮机控制设计和分析的多模态风力涡轮机模型。本研究将ATMD融入了该模型的塔楼。该模型经过随机产生的风量大速度,为结构不确定度的现代多兆瓦风力涡轮机的塔开发风引起的概率需求模型。已经进行了数值模拟,以确定主动控制系统的有效性,提高风力涡轮机的结构性能及其可靠性。该研究构建脆性曲线,其说明由于包括阻尼器而在塔的脆弱性中降低到风装的脆弱性。结果表明,主动控制器成功提高塔响应的可靠性。根据本文进行的分析,已经观察到在额定风速下超过给定位移的概率强调。 (c)2017 Elsevier Ltd.保留所有权利。

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