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A study of the ground-attachment process in natural lightning with emphasis on its breakthrough phase

机译:研究自然闪电的地面附着过程重点是突破阶段

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摘要

Synchronized high-speed (124 or 210 kiloframes per second) video images and wideband electromagnetic field records of the attachment process were obtained for 4 negative strokes in natural lightning at the Lightning Observatory in Gainesville, Florida. The majority of imaged upward connecting leaders (UCLs) and upward unconnected leaders, inferred to be mostly initiated from trees, exhibited a pulsating behavior (brightening/fading cycles). UCLs, whose maximum extent ranged from 11 to 25 m, propagated in virgin air at speeds ranging from 1.8 × 105 to 6.0 × 105 m/s with a mean of 3.4 × 105 m/s. Within about 100 m of the ground, the ratio of speeds of the downward negative leader and the corresponding positive UCL was about 3–4 for 2 events and 0.5 for 1 event. The breakthrough phase (final jump) was imaged for 2 events. The initial length of the common streamer zone (CSZ) was estimated to be about 30–40 m. For 2 events, speeds of positive and negative leaders developing toward each other inside the CSZ were found to be between 2.4 × 106 and 3.7 × 106 m/s. For 1 event, opposite polarity leaders were observed to accelerate inside the CSZ. The current at the end of the breakthrough phase, lasting on average 4.7 μs, was estimated to be approximately one-half of the overall current peak. Thus, about one-half of the current peak traditionally attributed to the return-stroke process is actually associated with two leaders extending toward each other to collision inside the CSZ.
机译:在佛罗里达州盖恩斯维尔的闪电天文台,通过自然雷击中的4次负击,获得了附着过程的同步高速(每秒124或210帧)视频图像和宽带电磁场记录。大部分成像的向上连接的引导杆(UCL)和向上未连接的引导杆(主要是由树木引发的)表现出脉动行为(变亮/褪色循环)。 UCLs的最大范围为11至25μm,它在原始空气中以1.8×10 5 到6.0×10 5 m / s的速度传播3.4×10 5 m / s。在离地面约100µm的范围内,向下的负引导线速度与相应的正UCL的速度比在2事件中约为3-4,在1事件中约为0.5。对突破阶段(最终跳跃)进行了两次成像。普通拖缆区(CSZ)的初始长度估计约为30–40µm。对于2个事件,发现在CSZ内部正负领导相互靠近的速度在2.4 developing×10 6 和3.7×10 6 m / s之间。对于1个事件,观察到相反极性的引线在CSZ内部加速。突破阶段结束时的电流平均持续4.7μs,估计约为整个电流峰值的一半。因此,传统上归因于回程过程的当前峰值的大约一半实际上与两个彼此延伸以在CSZ内部碰撞的引导线相关联。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    M. D. Tran; V. A. Rakov;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 15761
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
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