High Voltage Department, China Electric Power Research Institute, Beijing, 100192, China.
School of Electrical Engineering and Automation, Hefei University of Technology, Hefei, 230009, China.
Nat Commun. 2022 Jun 27;13(1):3655. doi: 10.1038/s41467-022-31409-x.
The physics governing the propagation of lightning leaders and long spark leaders is still not well understood. Positive and negative leaders seem to behave differently. Negative leaders develop in a step manner, guided by the separate luminous structures termed space stems and space leaders. Positive leaders, on the other hand, are generally thought to have no separate luminous structure involved in their propagation. However, a separate luminous structure observed in a positive leader discharge had been reported in recent literature, suggesting that positive leaders may similarly do steps to negative leaders under certain conditions. Here we report the observation of the positive leader step led by a separate luminous structure at high humidity in laboratory lightning-like discharges. We also found the streamer-like common zone connecting the primary leader channel with the separate luminous structure, as well as the bi-directional development of the separate luminous structure. We hope that these findings would contribute to a better understanding of the nature underlying positive long spark leaders and lightning leaders.
闪电先导和长火花先导的传播所遵循的物理规律仍未被很好地理解。正、负先导似乎表现出不同的行为。负先导以分步的方式发展,由称为空间茎和空间先导的独立发光结构引导。另一方面,正先导通常被认为在其传播过程中没有涉及到独立的发光结构。然而,最近的文献中报道了在正先导放电中观察到的一个独立的发光结构,这表明在某些条件下,正先导可能也像负先导那样分步骤进行。在这里,我们报告了在实验室闪电模拟放电中高湿度条件下,由独立发光结构引导的正先导分步骤的观测结果。我们还发现了连接主先导通道和独立发光结构的丝状共同区,以及独立发光结构的双向发展。我们希望这些发现有助于更好地理解正长火花先导和闪电先导的本质。