纳秒脉冲表面放电中的 Q-V 利萨如斯图研究

Hui Jiang, T. Shao, Cheng Zhang, Wenfeng Li, P. Yan, E. Schamiloglu
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引用次数: 3

摘要

纳秒级高电压脉冲激发的表面介质势垒放电是产生气流控制所需等离子体的一种可行方法。电荷传输是放电特性的一个重要参数,放电能量可通过电荷-间隙电压(Q-V)利萨如斯图获得。本文以重复纳秒脉冲发生器为基础,研究了大气空气中表面放电的 Q-V 利萨如斯图特性。结果表明,典型的 Q-V 利萨如斯图像呈椭圆形,且利萨如斯图像的特征随放电参数而变化。单脉冲中的传输电荷和能量都与施加的电压幅值成正比。利萨如斯图得到的能量总是低于 V-I-t 积分,平均功率可达数百毫瓦,而瞬时功率可达数十千瓦。外加电压对表面等离子体的均匀性起着更重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Q-V Lissajous figures in nanosecond-pulsed surface discharge
Surface dielectric barrier discharges excited by high nanosecond voltage pulses are a promising approach for producing plasma required by airflow control. Charge transport is an important parameter of discharge characteristics, and the discharge energy can be obtained using an electric charge - gap voltage (Q-V) Lissajous figure. Based on a repetitive nanosecond-pulse generator, the characteristics of Q-V Lissajous figures in surface discharge in atmospheric air were investigated in this paper. Results showed that typical Q-V Lissajous figure was like an ellipse and the characteristic of the Lissajous figure varied with the discharge parameters. Both transport charge and energy in single pulse are in proportion to applied voltage amplitude. The energy obtained by Lissajous figure is always lower than by V-I-t integration, and the average power was able to reach hundred milli-watts while the instantaneous power was able to reach tens of kilo-watts. The applied voltage played a more important role in the uniformity of surface plasmas.
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