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Experimental Characterization of a Novel Cyclotronic Plasma Actuator

机译:新型回旋等离子致动器的实验表征

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A novel axisymmetric device with pulsed spark emission was developed as an active flow control alternative to passive vortex generators. The flowfield induced by the actuator was studied in quiescent flow. The current-voltage characteristics and power requirements of the high-voltage circuit that powered the discharge were detailed at different operating power levels. A descending current-voltage characteristic typical for electric breakdown was identified. Schlieren visualization was used to study the thermal effects of the plasma on the surrounding air. The induced flow velocity close to the actuator face was directly related to the influence of the rotating discharge, whereas the flow farther away from the actuator face was dominated by thermal instabilities. Phase-locked stereoscopic particle image velocimetry data were acquired across seven evenly spaced planes perpendicular to the surface of the actuator at three different power levels. These data were used to reconstruct three-component volumetric-averaged velocity fields. The induced velocity by the plasma discharge was found to increase with supplied power. Two-dimensional planes and three-dimensional isosurfaces were used to describe the induced flow and characterize the vorticity created during actuation. An annular vorticity region was discovered centered above the electrode gap.
机译:开发了一种新型的带有脉冲火花发射的轴对称装置,作为主动涡流发生器的替代被动涡流发生器。在静态流动中研究了由致动器引起的流场。详细介绍了在不同工作功率水平下为放电供电的高压电路的电流电压特性和功率要求。确定了典型的电击穿电流-电压下降特性。 Schlieren可视化用于研究等离子体对周围空气的热效应。靠近执行机构面的感应流速与旋转排放的影响直接相关,而远离执行机构面的流动则受热不稳定性支配。在三个不同的功率水平下,在垂直于致动器表面的七个均匀间隔的平面上获取了锁相立体粒子图像测速数据。这些数据被用于重建三分量体积平均速度场。发现由等离子体放电引起的感应速度随所提供的功率而增加。二维平面和三维等值面用于描述诱导流并表征驱动期间产生的涡旋。发现在电极间隙上方居中的环形涡流区域。

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