高温清洁火焰诱导棒-棒电极间隙击穿的特性及机理

Jixiang Xu, Fei You, Wenhao Huangfu, Kai Shui, Songtao Zhou, Zonglin Fu
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引用次数: 0

摘要

为了研究真实野火产生的高温强火焰对高压输电线路周围气隙击穿特性的影响,研制了清洁火焰条件下的棒棒电极击穿放电试验系统。点燃乙醇后,将两个铜棒电极之间的间隙从3.0 cm以上调整到8.0 cm以上,进入大火焰,并在每个间隙距离的电极上施加动态电荷负荷(0 ~ 50 kV),直到气隙击穿。在击穿和放电过程中,记录了泄漏电流和瞬时击穿的演变波形和数据。结果表明,在高温火焰(750.0℃~850.0℃)条件下,与纯空气环境相比,无桥接和两电极间桥接的击穿电压分别降低了55.7% ~ 68.3%和78.6% ~ 82.9%。在一定比例的火焰等离子体作用下,杆杆间隙的绝缘强度较纯空气明显降低,说明高温火焰对流线的形成和发展影响较大,更容易形成放电通道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics and Mechanisms of Rod-Rod Electrode Gap Breakdown Induced by High-temperature and Clean Flame
In order to investigate influence of high-temperature and intense flames derived from real wildfires on air gap breakdown properties around high voltage transmission lines, a rod-rod electrode breakdown-discharge test system under clean flame conditions was developed. After igniting ethanol, the gap between two copper rod electrodes was adjusted from 3.0 to 8.0 cm above and into the bulk flame, and dynamic charge load (from 0 to 50 kV) was applied externally to electrodes at each gap distance until there occurred breakdown across air gap. Evolution waveform and data of leaked current and instantaneous breakdown were recorded during the breakdown and discharge processes. Results show that under condition of high-temperature flame (750.0 °C~850.0 °C), breakdown voltages decrease by 55.7 %~68.3 % and 78.6 %~82.9 % when the flame is not bridged and bridged between two electrodes compared with those in pure air atmosphere. Under the action of a certain portion of flame plasma, insulating strength of rod-rod gap decreases significantly compared with that of pure air, which indicates that the high-temperature flame has a great influence on the formation and development of streamer, and is easier to form discharge channels.
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