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Performance evaluation of full-scale tuned liquid dampers (TLDs) for vibration control of large wind turbines using real-time hybrid testing

机译:使用实时混合测试对大型风力发电机进行振动控制的全调谐液体阻尼器(TLD)的性能评估

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Tuned liquid dampers (TLDs) utilize the sloshing motion of the fluid to suppress structural vibrations and become a natural candidate for vibration control of large flexible wind turbines. Special structures such as wind turbine towers have characteristics and exhibit behavior which are significantly different from conventional civil engineering structures. In addition, the stochastic aerodynamic load generated from the turbulence is different from what is generated on conventional tall structures, due to rotationally sampled spectra. Experimental studies on the evaluation of full scale TLDs to control vibration of such special facilities like wind turbine towers are absent in literature. In this paper, the performance of a full-scale TLD in mitigating lateral tower vibrations of multi-megawatt wind turbines is evaluated through the real-time hybrid testing (RTHT). Lateral tower vibrations of wind turbines are normally lightly damped due to low or even negative aerodynamic damping, and large amplitude vibrations induced by wind and ocean wave loads in the lateral direction may significantly shorten the fatigue life of the tower. In the RTHT, the full-scale TLD is tested as the physical substructure while the wind turbine is modeled using a 13-degree-of-freedom (13-DOF) aeroelastic model. Wind turbines with 2 MW and 3 MW capacities have been considered and cases of the TLD with and without damping screens have been tested. Further, the effect of tuning ratios on the damper performance has been studied by changing the mean water level of the tank. Finally, comparison has been performed between the experimental results and the results from an theoretical model of the TLD-wind turbine system. The present study provides strong support and useful guidelines for the application of TLDs in large wind turbines. (C) 2016 Published by Elsevier Ltd.
机译:调谐液体阻尼器(TLD)利用流体的晃动运动来抑制结构振动,并成为控制大型柔性风力涡轮机振动的自然选择。诸如风轮机塔架之类的特殊结构具有与常规土木工程结构明显不同的特性和行为。另外,由于旋转采样光谱,由湍流产生的随机空气动力载荷不同于在常规高层结构上产生的空气动力载荷。文献中缺少用于控制诸如风力涡轮机塔架之类的特殊设施的振动的全尺寸TLD评估的实验研究。在本文中,通过实时混合测试(RTHT)评估了全尺寸TLD缓解多兆瓦级风力涡轮机塔架横向振动的性能。风力涡轮机的侧向塔架振动通常由于空气动力学阻尼较低甚至为负而被略微衰减,并且风和海浪载荷在横向方向上引起的大振幅振动会显着缩短塔架的疲劳寿命。在RTHT中,将完整的TLD作为物理子结构进行测试,而使用13自由度(13-DOF)气动弹性模型对风力涡轮机进行建模。已经考虑了容量为2 MW和3 MW的风力涡轮机,并且已经测试了带或不带阻尼屏的TLD案例。此外,已经通过改变水箱的平均水位研究了调节比对减震器性能的影响。最后,将实验结果与TLD-风力涡轮机系统的理论模型的结果进行了比较。本研究为大型风力涡轮机中TLD的应用提供了有力的支持和有用的指南。 (C)2016由Elsevier Ltd.出版

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