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首页> 外文期刊>IEEE Transactions on Plasma Science >Study of Induced EHD Flow by Microplasma Vortex Generator
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Study of Induced EHD Flow by Microplasma Vortex Generator

机译:等离子体涡发生器产生EHD流的研究

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摘要

For flow control, plasma actuators have the advantages of no moving parts. An experimental study was carried out to generate vortexes using a microplasma actuator. Also, a 3-D numerical simulation code was developed to calculate the flow generated by the microplasma actuator. The numerical simulation used the Suzen-Huang model coupled with Navier-Stokes equations. Our microplasma actuator has a thin dielectric layer with a thickness of $25mu ext{m}$ between the grounded and high-voltage energized electrodes, which enables to drive our device at less than 1 kV. The high-voltage and grounded electrodes have both holes. In the series of experiments, an ac voltage with an amplitude 1 kV and a frequency of 20 kHz was applied to the electrode. The induced flow was visualized using an Nd: YVO4 532-nm laser, and the flow velocity was measured using the particle tracking velocimetry (PTV) method. Incense smoke was utilized as a tracer particle. The electrohydrodynamic (EHD) flow was induced around the holes of high-voltage electrode, thus vortexes appeared above these holes. In order to study the basic phenomena of the flow, one and four holes were isolated from the electrode; thus, the phenomena could be observed in a simplified version of the electrode. The 3-D numerical simulation code showed similar results both in values and flow configuration compared with the experimental results.
机译:对于流量控制,等离子执行器具有无活动部件的优点。使用微等离子体致动器进行了实验研究以产生涡旋。另外,开发了3-D数值模拟代码以计算由微等离子体致动器产生的流量。数值模拟使用了Suzen-Huang模型和Navier-Stokes方程。我们的等离子致动器在接地电极和高压通电电极之间具有一个薄的介电层,其厚度为$ 25 mu text {m} $,从而可以在不到1 kV的电压下驱动我们的设备。高压电极和接地电极都有两个孔。在一系列实验中,将振幅为1 kV且频率为20 kHz的交流电压施加到电极上。使用Nd:YVO4 532-nm激光观察诱导的流动,并使用粒子跟踪测速(PTV)方法测量流速。香烟被用作示踪剂颗粒。在高压电极的孔周围感应出电动流体(EHD)流,因此在这些孔上方出现了涡流。为了研究流动的基本现象,从电极上隔离了一个和四个孔。因此,可以在电极的简化版本中观察到该现象。与实验结果相比,该3-D数值模拟代码在数值和流量配置方面显示出相似的结果。

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