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A Comparative Flow Physics Study of Ns-DBD vs Ac-DBD Plasma Actuators for Transient Separation Control on a NACA 0012 Airfoil

机译:NS-DBD VS AC-DBD等离子体致动器对NACA 0012翼型瞬态分离控制的比较流量研究

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Nanosecond (ns) and alternating current (ac) dielectric barrier discharge (DBD) plasma actuators are studied in a transient separation control setup. The effects of forcing on flow over a NACA 0012 airfoil in stall (AoA = 18°) at a Reynolds number of 740,000 are compared. The flow response to single pulse forcing with time scales much less than the convective time is investigated with the aid of 2-D PIV. The experiment is carried out by phase averaging over different time delays after the actuation pulse ranging t/T_(conv) = 0 to 10. Pulse energy is varied by a factor of three, but minimal impact on the two actuation mechanisms is observed. The results indicate a somewhat surprising similarity in the global flow response to ns-DBD (thermal) and ac-DBD (momentum) actuation mechanisms. The location, structure and strength of the excited vortical structures are compared and local variations originating from different actuation mechanisms are observed. Ns-DBD induced perturbations are found to be stronger at a given level of electrical energy. However the differences in global flow response are small.
机译:在瞬态分离控制设置中研究了纳秒(NS)和交流(AC)介电阻挡放电(DBD)等离子体致动器。比较在雷诺数为740,000的雷诺数(AOA = 18°)中锻造在NaCA 0012翼型上的流动的影响。借助于2-D PIV研究了对单脉冲迫使单脉冲强制的流动响应远小于对流时间。通过在致动脉冲范围T / T_(CONV)= 0至100至10之后的不同时间延迟通过相位平均进行实验。脉冲能量变化为三倍,但观察到对两个致动机构的影响最小。结果表明了对NS-DBD(热)和AC-DBD(动量)致动机构的全局流动响应中的令人惊讶的相似性。比较激发涡流结构的位置,结构和强度,并且观察到源自不同致动机构的局部变化。发现NS-DBD诱导的扰动在给定水平的电能下更强。然而,全局流动响应的差异很小。

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