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Multiple tuned mass damper for multi-mode vibration reduction of offshore wind turbine under seismic excitation

机译:地震激励下海上风力发电机多模式减振的多重调谐质量阻尼器

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摘要

With the wide spreads of the wind energy production industry, the demand for the safe and feasible design of wind turbine structures is growing swiftly. The magnificent deployment of wind turbines in hostile environments with high seismic hazard, has lead engineers to consider more comprehensive way of seismic design, and control technics of a gigantic structure like jacket supported offshore wind turbine (OWT). The current research provides an overview to alleviate the dynamic structural responses of the jacket supported OWT due to the seismic loads associated with static wind and wave loads. Multiple tuned mass damper (MTMD) has been installed at the top and base of the turbine tower corresponding to the mode shapes of the structure. The MTMD parameters have been optimized based on response surface methodology (RSM). The performance of MTMD following the multi-mode control strategy seems to be prominent in suppressing the first two vibrational modes. To evaluate the proposed strategy, frequency response function (FRF), fast Fourier transforms (FFT), peak and lateral displacements of the tower, root mean square (RMS), shear and moment have been investigated through the uncontrolled and controlled structures. In addition, the practicability of the MTMD system is also compared with the single tuned mass damper (STMD).
机译:随着风能生产行业的广泛普及,对风力涡轮机结构的安全可行设计的需求正在迅速增长。风力涡轮机在具有高地震危险的恶劣环境中的宏伟部署,导致工程师考虑了更全面的抗震设计方法,并控制了巨型结构(如夹套海上风力涡轮机(OWT))的控制技术。当前的研究提供了一个概述,以减轻由于与静风和波浪载荷相关的地震载荷而引起的夹套支撑OWT的动态结构响应。多重调谐质量阻尼器(MTMD)已安装在涡轮塔的顶部和底部,与结构的模式形状相对应。 MTMD参数已基于响应面方法(RSM)进行了优化。遵循多模式控制策略的MTMD的性能在抑制前两个振动模式方面似乎很突出。为了评估所提出的策略,已经通过不受控制和受控的结构研究了频率响应函数(FRF),快速傅立叶变换(FFT),塔的峰值和横向位移,均方根(RMS),剪切力和弯矩。此外,还将MTMD系统的实用性与单调谐质量阻尼器(STMD)进行了比较。

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