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Diameter-speed relation of sprite streamers

机译:精灵流光的直径-速度关系

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Propagation and splitting of sprite streamers has been observed at high temporal and spatial resolution using two intensified high-speed CMOS cameras recording at 10000 and 16000 frames per second. Concurrent video recordings from a remote site provided data for triangulation allowing us to determine accurate altitude scales for the sprites. Diameters and speeds of the sprite streamers were measured from the high-speed images, and the diameters were scaled to the reduced diameters based on the triangulated locations. The sprite streamers with larger reduced diameter move faster than those with smaller diameter; the relation between the reduced diameter and speed is roughly linear. The reduced diameters at 6570km altitude are larger than streamer diameters measured at ground pressure in laboratory discharges indicating a deviation from the similarity law possibly due to the effects of the photoionization and an expansion of the streamer head along its propagation over a long distance. The reduced diameter and speed of the sprite streamers agree well with the diametervelocity relation proposed by Naidis (2009 Phys. Rev. E 79 057401), and the peak electric field of the sprite streamers is estimated to be approximately 35 times the breakdown threshold field.
机译:使用两个以每秒10000和16000帧的速度录制的增强型CMOS高速摄影机,可以在高时间和空间分辨率下观察到子画面流光的传播和分裂。来自远程站点的并发视频记录提供了用于三角测量的数据,使我们能够确定子画面的准确高度比例。从高速图像中测量了精灵流光的直径和速度,并根据三角位置将直径缩放为缩小的直径。直径减小的子图形流光比直径较小的子图形流光移动更快。直径减小与速度之间的关系大致呈线性关系。在6570km高度处减小的直径大于在实验室放电中在地面压力下测量的拖缆直径,这表明与相似性定律存在偏差,这可能是由于光电离和拖缆头沿其长距离传播而产生的影响。子图形拖缆的减小的直径和速度与Naidis(2009 Phys。Rev. E 79 057401)提出的直径-速度关系很好地相符,并且估计子图形拖缆的峰值电场约为击穿阈值场的35倍。

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