Initiation mechanism of negative pulsed discharge in supercritical carbon dioxide

T. Furusato, T. Ihara, T. Kiyan, S. Katsuki, M. Hara, H. Akiyama
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Abstract

The initiation mechanism of a negative pulsed discharge in pressurized carbon dioxide including supercritical (SC) phase was studied using pulsed Schlieren and photomultiplier techniques. The appearance of the negative streamer at its initial stage was quite different from the positive one: a bush of negative polarity and a filament of positive polarity. A clear discontinuity existed around the sub-critical phase, characterized by streamer initiation voltage versus medium condition: The streamer initiation voltage increased with the medium density in gas phase, but was mostly independent of the medium density in SC and liquid phases. Calculation of field emission current according to Fowler-Nordheim equation suggested that the streamer initiation in both SC and liquid phases was caused by field emission, while within gas phase, initial electrons might be supplied by electron detachment from CO2- ions.
超临界二氧化碳负脉冲放电起爆机理研究
利用脉冲纹影和光电倍增技术研究了加压二氧化碳(含超临界)相中负脉冲放电的引发机理。负飘带在其初始阶段的外观与正飘带有很大的不同:负极性的灌木和正极性的细丝。在亚临界相周围存在明显的不连续现象,其特征是流线起始电压与介质状态的关系:气相流线起始电压随介质密度的增大而增大,但与SC和液相介质密度基本无关。根据Fowler-Nordheim方程计算场发射电流表明,SC和液相中的流光起始都是由场发射引起的,而在气相中,初始电子可能是由CO2离子的电子脱离提供的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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