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首页> 外文期刊>Journal of intelligent material systems and structures >Macro-Fiber Composite Actuators for Flow Control of a Variable Camber Airfoil
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Macro-Fiber Composite Actuators for Flow Control of a Variable Camber Airfoil

机译:宏纤维复合致动器,用于可变弧度翼型的流量控制

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This research employs solid-state actuators for delay of flow separation seen in airfoils at low Reynolds numbers. The flow control technique investigated here is aimed for a variable camber airfoil that employs two active surfaces and a single four-bar (box) mechanism as the internal structure. To reduce separation, periodic excitation to the flow around the leading edge of the airfoil is induced by a total of nine piezocomposite actuated clamped-free unimorph benders distributed in the spanwise direction. An electromechanical model is employed to design an actuator capable of high deformations at the desired frequency for lift improvement at post-stall angles. The optimum spanwise distribution of excitation for increasing lift coefficient is identified experimentally in the wind tunnel. A 3D (non-uniform) excitation distribution achieved higher lift enhancement in the post-stall region with lower power consumption when compared to the 2D (uniform) excitation distribution. A lift coefficient increase of 18.4% is achieved with the identified non-uniform excitation mode at the bender resonance frequency of 125 Hz, the flow velocity of 5 m/s and at the reduced frequency of 3.78. The maximum lift (Clmax) is increased 5.2% from the baseline. The total power consumption of the flow control technique is 639 mWrms.
机译:这项研究采用固态致动器来延迟低雷诺数的机翼中的流动分离。此处研究的流量控制技术针对采用两个活动表面和单个四连杆(箱形)机构作为内部结构的可变外倾翼型。为了减少分离,通过在翼展方向上分布的总共九个压电复合材料致动的无夹紧单压电晶片弯曲器,引起对翼型前缘周围流的周期性激励。机电模型用于设计一种执行器,该执行器能够在所需频率下发生较大变形,以改善失速后角的升力。在风洞中通过实验确定了用于提高升力系数的激励的最佳翼展方向分布。与2D(均匀)激励分布相比,3D(非均匀)激励分布在失速后区域中实现了更高的升力增强,并且功耗更低。在弯曲的共振频率为125 Hz,流速为5 m / s,降低的频率为3.78的情况下,通过确定的非均匀激励模式,提升系数增加了18.4%。最大升程(Clmax)从基线增加了5.2%。流量控制技术的总功耗为639 mWrms。

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