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High-lift airfoil trailing edge separation control using a single dielectric barrier discharge plasma actuator

机译:使用单个介电势垒放电等离子体致动器的高升力翼型后缘分离控制

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Control of flow separation from the deflected flap of a high-lift airfoil up to Reynolds numbers of 240,000 (15 m/s) is explored using a single dielectric barrier discharge (DBD) plasma actuator near the flap shoulder. Results show that the plasma discharge can increase or reduce the size of the time-averaged separated region over the flap depending on the frequency of actuation. High-frequency actuation, referred to here as quasi-steady forcing, slightly delays separation while lengthening and flattening the separated region without drastically increasing the measured lift. The actuator is found to be most effective for increasing lift when operated in an unsteady fashion at the natural oscillation frequency of the trailing edge flow field. Results indicate that the primary control mechanism in this configuration is an enhancement of the natural vortex shedding that promotes further momentum transfer between the freestream and separated region. Based on these results, different modulation waveforms for creating unsteady DBD plasma-induced flows are investigated in an effort to improve control authority. Subsequent measurements show that modulation using duty cycles of 50–70% generates stronger velocity perturbations than sinusoidal modulation in quiescent conditions at the expense of an increased power requirement. Investigation of these modulation waveforms for trailing edge separation control similarly shows that additional increases in lift can be obtained. The dependence of these results on the actuator carrier and modulation frequencies is discussed in detail.
机译:使用靠近襟翼肩部的单个介电势垒放电(DBD)等离子体致动器,探索了从高升力翼型的偏转襟翼到雷诺数240,000(15 m / s)的流分离控制。结果表明,等离子放电可根据致动频率增加或减小襟翼上时间平均分离区域的大小。高频驱动(此处称为准稳定施力)会略微延迟分离,同时延长并展平分离的区域,而不会显着增加测量的升程。当以后缘流场的自然振荡频率不稳定地操作时,发现执行器对于增加升力最有效。结果表明,这种配置下的主要控制机制是自然涡旋脱落的增强,从而促进了自由流和分离区域之间的进一步动量传递。基于这些结果,研究了用于产生不稳定的DBD等离子体感应流的不同调制波形,以提高控制权限。随后的测量表明,在静态条件下,使用占空比为50-70%的调制会产生比正弦调制更强的速度扰动,但会增加功率需求。对用于后沿分离控制的这些调制波形的研究类似地表明,可以获得升力的额外增加。详细讨论了这些结果对执行器载体和调制频率的依赖性。

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