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Space charge characteristics of multiple reigniting secondary arc in atmospheric air

机译:大气中多次重燃二次电弧的空间电荷特性

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In order to investigate the electrical characteristics and the morphologic development of secondary arc in atmospheric air, a simulative experimental platform of secondary arc for UHV transmission lines was built and the corresponding experimental procedure was introduced in this paper. The discharge waveforms were categorized into three stages: the short-circuit arc period, the transition period of short-circuit arc and the secondary arc, as well as the secondary arc period. And the electrical characteristics of each stage were analyzed, involved with discharge power and discharge energy. By observing the arc discharge images, the forming process and the multiple reignition phenomenon of secondary arc were displayed and analyzed in associated with the corresponding discharge waveforms. A short-cutting event of the plasma column may happen when suddenly a new, shorter current path forms and the former arc path gradually disappears because of larger arc resistance. It was also found that the arc length and the arc diameter in the experiment were consistent to the computational values. The research results present analytical basis and theoretical reference for explanation and suppression of secondary arc on UHV transmission lines.
机译:为了研究大气中二次电弧的电学特性和形态发展,建立了特高压输电线路二次电弧的模拟实验平台,并介绍了相应的实验程序。放电波形分为三个阶段:短路电弧期,短路电弧和次级电弧的过渡期以及次级电弧期。并分析了每个阶段的电气特性,涉及放电功率和放电能量。通过观察电弧放电图像,结合相应的放电波形,显示并分析了二次电弧的形成过程和多次重燃现象。当突然形成一条新的较短的电流路径,并且由于较大的电弧电阻而逐渐消失了以前的电弧路径时,可能发生等离子柱的捷径事件。还发现实验中的电弧长度和电弧直径与计算值一致。研究结果为特高压输电线路二次电弧的解释和抑制提供了分析依据和理论参考。

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