非均匀气隙中正流光的传播和击穿特性

T. Iwata, H. Okubo, H. Kojima, N. Hayakawa, F. Endo, Norihito Yanagita, T. Kato, T. Rokunohe
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引用次数: 10

摘要

通过同步测量条纹图像、光强、放电电流和快速分幅图像,以纳秒级时间分辨率研究了空气中针平面电极的放电现象。当施加正脉冲电压时,一次流光从针尖开始并传播到接地面电极。在主流光到达平面电极后,产生二次流光。施加电压、一次和二次流电流与二次流起始时间有密切关系。当二次流线到达平面电极时,击穿就开始了。此外,击穿时间随着二次流电流的增大而缩短。
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Positive streamer propagation and breakdown characteristics in non-uniform air gap
Discharge phenomena in a needle-plane electrode in air were studied with nano-second time resolution by means of synchronous measurement of streak image, light intensity, discharge current and fast-framing image. When positive impulse voltage was applied, a primary streamer initiated from the needle tip and propagated to the grounded plane electrode. A secondary streamer initiated after the primary streamer arrived at the plane electrode. There are close relations between the applied voltage, the primary and the secondary streamer current and the initiation time of the secondary streamer. The breakdown can start when the secondary streamer have arrived at the plane electrode. Moreover, the time to breakdown becomes shorter with the increase in the secondary streamer current.
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