Visualization of positive pulsed streamer in supercritical carbon dioxide by Schlieren Method

T. Furusato, T. Ihara, S. Kameda, T. Kiyan, S. Katsuki, M. Hara, H. Akiyama
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引用次数: 10

Abstract

This paper deals with visualization of positive pulsed streamers and arc discharge under a needle-to-plane gap in supercritical carbon dioxide (SCCO2) by the Schlieren Method. In addition, differences in streamer branches in gas, liquid and supercritical phases of CO2 are evaluated by means of fractal dimension. The experimental results are summarized as follows: 1) a tree-like streamer growing from the tip of needle was successfully visualized. The field strength for streamer initiation and the mean velocity of the streamer are estimated as approximately 9 MV/cm and 60 km/s, respectively. Pre-breakdown phenomena in SCCO2 are divided into two processes: streamer growth and shockwave expansion. 2) Streamer branches in SC phase were found to be more complicated than in other phase of CO2. 3) Bubble formation in the streamer initiation process was not recognized in SCCO2. For dielectric breakdown, the cylindrical shockwave grows along the streamer channel. A trace of light emission is recognized near the center of the arc column with a residual image of the streamer.
超临界二氧化碳中正脉冲流光的纹影显示
本文用纹影法研究了超临界二氧化碳(SCCO2)中针面间隙下正脉冲流和电弧放电的可视化。此外,利用分形维数评价了CO2气相、液相和超临界相流线分支的差异。实验结果如下:1)成功地实现了针尖生长的树形飘带的可视化。据估计,流的起始场强和流的平均速度分别约为9 MV/cm和60 km/s。SCCO2中的预击穿现象分为两个过程:流光生长和冲击波膨胀。2) SC相的拖链分支比其他CO2相更为复杂。3)在SCCO2中未发现拖缆起爆过程中的气泡形成。对于介质击穿,圆柱形冲击波沿流光通道生长。在圆弧柱中心附近可以识别出光发射的痕迹,并带有流光的残差图像。
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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