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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Development of localized arc filament RF plasma actuators for high-speed and high Reynolds number flow control
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Development of localized arc filament RF plasma actuators for high-speed and high Reynolds number flow control

机译:开发用于高速和高雷诺数流量控制的局部电弧灯丝RF等离子致动器

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摘要

Recently developed localized arc filament plasma actuators (LAFPAs) have shown tremendous control authority in high-speed and high Reynolds number flow for mixing enhancement and noise mitigation. Previously, these actuators were powered by a high-voltage pulsed DC plasma generator with low energy coupling efficiency of 5-10%. In the present work, a new customdesigned 8-channel pulsed radio frequency (RF) plasma generator has been developed to power up to 8 plasma actuators operated over a wide range of forcing frequencies (up to 50 kHz) and duty cycles (1-50%), and at high energy coupling efficiency (up to 80-85%). This reduces input electrical power requirements by approximately an order of magnitude, down to 12 Wper actuator operating at 10% duty cycle. The new pulsed RF plasma generator is scalable to a system with a large number of channels. Performance of pulsed RF plasma actuators used for flow control was studied in a Mach 0.9 circular jet with a Reynolds number of about 623,000 and compared with that of pulsed DC actuators. Eight actuators were distributed uniformly on the perimeter of a 2.54-cm diameter circular nozzle extension. Both types of actuators coupled approximately the same amount of power to the flow, but with drastically different electrical inputs to the power supplies. Particle image velocimetry measurements showed that jet centerline Mach number decay produced by DC and RF actuators operating at the same forcing frequencies and duty cycles is very similar. At a forcing Strouhal number near 0.3, close to the jet column instability frequency, wellorganized periodic structures, with similar patterns and dimensions, were generated in the jets forced by both DC and RF actuators. Far-field acoustic measurements demonstrated similar trends in the overall sound pressure level (OASPL) change produced by both types of actuators, resulting in OASPL reduction up to 1.2-1.5 dB in both cases. We conclude that pulsed RF actuators demonstrate flow control authority similar to pulsed DC actuators, with a significantly reduced power budget.
机译:最近开发的局部电弧丝等离子体致动器(LAFPA)在高速和高雷诺数流量方面显示了巨大的控制权,可用于增强混合效果和降低噪音。以前,这些执行器由高压脉冲直流等离子体发生器提供动力,能量耦合效率为5-10%。在当前的工作中,已经开发了一种新的定制设计的8通道脉冲射频(RF)等离子体发生器,可为多达8个等离子体致动器提供动力,这些致动器在很大的强制频率(高达50 kHz)和占空比(1-50)下运行%),并具有高能量耦合效率(高达80-85%)。这样可以将输入电功率要求降低大约一个数量级,以10%的占空比工作时可降低至12 Wper执行器。新的脉冲RF等离子发生器可扩展到具有大量通道的系统。在流量为623,000的雷诺数为0.9的Mach 0.9圆形喷嘴中研究了用于流量控制的脉冲RF等离子致动器的性能,并将其与脉冲DC致动器的性能进行了比较。八个致动器均匀分布在直径为2.54厘米的圆形喷嘴延伸部分的周边。两种类型的执行器都将大致相同的功率耦合到流,但是电源的电输入却大不相同。粒子图像测速仪测量结果表明,在相同的强制频率和占空比下工作的DC和RF执行器产生的射流中心线马赫数衰减非常相似。在强迫斯特劳哈尔数接近0.3时,接近喷嘴列的不稳定性频率,在由直流和射频致动器推动的喷嘴中产生了组织良好的周期性结构,具有相似的图案和尺寸。远场声学测量表明,两种类型的执行器产生的总体声压级(OASPL)变化趋势相似,导致两种情况下的OASPL降低高达1.2-1.5 dB。我们得出的结论是,脉冲式RF执行器具有类似于脉冲式DC执行器的流量控制权限,并且功率预算大大降低。

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