Formation of diffuse and spark discharges between two needle electrodes with the scattering of particles

V. Tarasenko, D. Beloplotov, Panchenko Alexey, Dmitry Sorokin
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Abstract

The development of a nanosecond discharge in a pin-to-pin gap filled with air at atmospheric pressure has been studied with high temporal and spatial resolutions from a breakdown start to the spark decay. Positive and negative nanosecond voltage pulses with an amplitude of tens kV were applied. Time-resolved images of the discharge development were taken with a four-channel ICCD camera. The minimum delay between the camera channels could be as short as 0.1 ns. This made it possible to study the gap breakdown process with subnanosecond resolution. It was observed that a wide-diameter streamer develops from the high-voltage pointed electrode. The ionization processes near the grounded pin electrode started when the streamer crossed half of the gap. After bridging the gap by the streamer, a diffuse discharge was formed. The development of spark leaders from bright spots on the surface of the pointed electrodes was observed at the next stage. It was found that the rate of development of the spark leader is an order of magnitude lower than that of the wide-diameter streamer. Long thin luminous tracks were observed against the background of a discharge plasma glow. It has been established that the tracks are adjacent to brightly glowing spots on the electrodes and are associated with the flight of small particles.
在两个针电极之间形成弥散放电和火花放电,并伴有颗粒散射
我们以较高的时间和空间分辨率研究了大气压下充满空气的针对针间隙中纳秒放电从击穿开始到火花衰减的发展过程。研究人员施加了振幅为几十千伏的正纳秒和负纳秒电压脉冲。使用四通道 ICCD 摄像机拍摄放电过程的时间分辨图像。照相机通道之间的最小延迟可短至 0.1 毫微秒。这样就能以亚纳秒分辨率研究间隙击穿过程。据观察,高压尖电极上出现了宽直径的流线。当流束穿过一半间隙时,接地针电极附近的电离过程开始。在流束弥合间隙后,形成了扩散放电。在下一阶段,从尖头电极表面的亮点开始观察火花塞的发展。结果发现,火花引线的发展速度比宽直径流线低一个数量级。在放电等离子体发光的背景下,观察到了细长的发光轨迹。已经确定,这些轨迹与电极上的发光点相邻,与小颗粒的飞行有关。
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