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Positive and negative streamer propagation in volume dielectric barrier discharges with planar and porous electrodes

机译:具有平面和多孔电极的体积介质屏障排出的正面和负飘移器传播

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摘要

The spatiotemporal dynamics of volume and surface positive and negative streamers in a pin-to-plate volume dielectric barrier discharge is investigated in this study. The discharge characteristics are found to be completely different for positive and negative streamers. First, the spatial propagation of a positive streamer is found to rely on electron avalanches caused by photoelectrons in front of the streamer head, whereas this is not the case for negative streamers. Second, our simulations reveal an interesting phenomenon of floating positive surface discharges, which develop when a positive streamer reaches a dielectric wall and which explain the experimentally observed branching characteristics. Third, we report for the first time, the interactions between a positive streamer and dielectric pores, in which both the pore diameter and depth affect the evolution of a positive streamer.
机译:在本研究中研究了在销压容积介质屏障放电中的体积和表面正和负飘带的时空动力学。发现放电特性对于正面和负飘带完全不同。首先,发现正射门的空间传播依赖于拖缆头前面的光电子引起的电子雪崩,而这不是负飘带的情况。其次,我们的模拟揭示了浮动阳性表面放电的有趣现象,其在正射门达到介电壁并且解释实验观察到的分支特征时产生。第三,我们首次报告,正射门和介电孔之间的相互作用,其中孔径和深度都影响了正射门的演变。

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