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WIND-TURBINE VIBRATION REDUCTION USING FLOW CONTROL DEVICES

机译:使用流量控制装置的风轮机减振

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The size of wind turbine blades has been continuously increased for better aerodynamic efficiency. However, the large scale blades induce loud noise and vibration as well as the increased difficulty in maintenance; all of these eventually causes the increase in the cost of energy. The vibration of wind turbines is mainly caused by wind turbulence, wind shear, and tower shadow. These causes change in local angle of attack of wind turbine blades and create mostly periodic vibration. In this work, a flow control device is applied for vibration reduction of wind turbine blades. The conventional role of flow control devices is to increase lift coefficient and to reduce drag coefficient by flow separation delay. In this research, flow control device is used to make a flat slope of lift coefficient in specific angle of attack range for vibration reduction; lift coefficient is not always increased but also decreased, too. To manipulate the lift coefficient slope, several types of flow separation controller are considered. Finally, a plasma actuator is selected because the minimal structural modification is necessary while providing sufficient lift coefficient control. The plasma actuator is attached to an airfoil to blow the jet upwind to decrease the lift. Computational fluid dynamics simulation is conducted to estimate the flow control performance of the plasma actuator. Experiments are conducted on a DU35-A17 airfoil to verify the lift coefficient manipulation performance of the plasma actuator.
机译:风力涡轮机叶片的尺寸不断增加,以提高空气动力学效率。但是,大型叶片会产生很大的噪音和振动,并且增加了维护难度。所有这些最终导致能源成本的增加。风力涡轮机的振动主要是由湍流,风切变和塔影引起的。这些会导致风力涡轮机叶片的局部攻角发生变化,并产生主要为周期性的振动。在这项工作中,应用了一种流量控制装置来减小风力涡轮机叶片的振动。流量控制装置的常规作用是通过流分离延迟来增加升力系数并减小阻力系数。在这项研究中,使用流量控制装置在特定的迎角范围内使升力系数的斜率平坦,以减少振动。升力系数并不总是增加,但也总是降低。为了操纵升力系数斜率,考虑了几种类型的分流控制器。最后,选择等离子体致动器是因为在提供足够的升力系数控制的同时,需要进行最小的结构修改。等离子致动器安装在翼型上,以向上方吹射流,以减小升力。进行计算流体动力学仿真以估计等离子体致动器的流量控制性能。在DU35-A17机翼上进行了实验,以验证等离子执行器的升力系数操纵性能。

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