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Effects of airflow on the distribution of filaments in atmospheric AC dielectric barrier discharge

机译:气流对大气交流电介质势垒放电中灯丝分布的影响

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Atmospheric-pressure dielectric barrier discharge (DBD) accompanied by airflow has attracted a significant attention for its extensive applications. In this paper, the effects of airflow on the characteristics of the atmospheric air DBD plasma are experimentally investigated using the DBD reactor excited by a 15 kHz AC power source. In order to study the discharge filaments distribution at different flow rates, transparent conductive indium tin oxide film is used as the upper electrode, and quartz glasses are used as insulated dielectrics. Experiment results prove that the breakdown voltage is decreased and more current pulses with declined amplitudes are produced when the airflow is introduced into the discharge gap. It is confirmed that although the discharge seems to be diffuse in the presence of airflow to the naked eyes, the discharge mode remains filamentary in the intensified charge-coupled device images within a single AC cycle. By acquiring the images with a different exposure time, it can be recognized that the discharge filaments move along the flow field direction with a velocity less than the corresponding flow rate. The movement of discharge filaments is attributed to the motion of the charge induced by the airflow. Published by AIP Publishing.
机译:大气压介质阻挡放电(DBD)伴随着气流的广泛应用引起了人们的极大关注。在本文中,使用由15 kHz交流电源激发的DBD反应堆,通过实验研究了气流对大气DBD等离子体特性的影响。为了研究不同流量下的放电丝分布,上层电极采用透明导电铟锡氧化物膜,绝缘电介质采用石英玻璃。实验结果证明,当将气流引入放电间隙时,击穿电压降低,并且产生更多幅度减小的电流脉冲。可以确认的是,尽管在空气流向肉眼的情况下,放电似乎是分散的,但在单个AC周期内,放电模式在增强的电荷耦合器件图像中仍保持丝状。通过获取具有不同曝光时间的图像,可以识别出放电丝沿着流场方向以小于相应流速的速度移动。放电丝的运动归因于气流引起的电荷运动。由AIP Publishing发布。

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