电压
材料科学
上升时间
原子物理学
脉搏率
流光放电
环境科学
大气压力
脉搏(音乐)
光学
气象学
物理
机械
血压
放射科
医学
量子力学
作者
Atsushi Komuro,Terumasa Ryu,Akihiro Yoshino,Takao Namihira,Douyan Wang,Ryo Ono
标识
DOI:10.1088/1361-6463/ac0b0f
摘要
This study investigates the effects of voltage rise rates from 0.1 kV ns−1 to 100 kV ns−1 on streamer discharge in air at atmospheric pressure using numerical simulation. The curvature of the needle electrode is also used as an input parameter to change the streamer inception voltage and the average voltage, Vave, during streamer propagation. The results show that the streamer propagation velocity, vpri, the electric field strength at the streamer head, Eh, the diameter of the streamer channel, and the O radical production characteristics during the primary streamer propagation are dependent on Vave. vpri and Eh exhibit different effects on Vave/d, where d is the gap distance of the electrode, which indicates that the streamer remains in the transient state from the filament-type discharge to the diffuse-type discharge. The comparison between the simulation and experimental results shows that the simulated vpri characteristics are in good agreement with the experimental results, regardless of the voltage waveform and electrode configuration, which indicates that Vave/d has a strong correlation with the primary streamer characteristics.
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