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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Characteristics of Lightning Within Electrified Snowfall Events Using Lightning Mapping Arrays
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Characteristics of Lightning Within Electrified Snowfall Events Using Lightning Mapping Arrays

机译:使用闪电映射阵列电气化降雪事件中闪电特征

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This study examined 34 lightning flashes within four separate thundersnow events derived from lightning mapping arrays (LMAs) in northern Alabama, central Oklahoma, and Washington DC. The goals were to characterize the in-cloud component of each lightning flash, as well as the correspondence between the LMA observations and lightning data taken from national lightning networks like the National Lightning Detection Network (NLDN). Individual flashes were examined in detail to highlight several observations within the data set. The study results demonstrated that the structures of these flashes were primarily normal polarity. The mean area encompassed by this set of flashes is 375 km~2, with a maximum flash extent of 2,300 km~2, a minimum of 3 km~2, and a median of 128 km~2. An average of 2.29 NLDN flashes were recorded per LMA-derived lightning flash. A maximum of 11 NLDN flashes were recorded in association with a single LMA-derived flash on 10 January 2011. Additionally, seven of the 34 flashes in the study contain zero NLDN-identified flashes. Eleven of the 34 flashes initiated from tall human-made objects (e.g., communication towers). In at least six lightning flashes, the NLDN detected a return stroke from the cloud back to the tower and not the initial upward leader. This study also discusses lightning’s interaction with the human-built environment and provides an example of lightning within heavy snowfall observed by Geostationary Operational Environmental Satellite-16’s Geostationary Lightning Mapper.
机译:本研究在俄克拉荷马州北部的闪电映射阵列(LMA)的四个单独的雷通道内进行了34个闪电闪烁,从俄克拉荷马州北部,中央俄克拉荷马州和华盛顿特区。目标是表征每个闪电闪现的云组件,以及LMA观测和从国家闪电网(NLDN)等国家闪电网所采取的闪电数据之间的对应关系。详细检查各个闪烁,以突出数据集中的几个观察。研究结果表明,这些闪光的结构主要是正常的极性。这套闪光包围的平均面积为375 km〜2,最大闪存范围为2,300 km〜2,最小值3 km〜2,中位数为128 km〜2。每个LMA衍生的闪电闪光灯将平均记录2.29 NLDN闪光。最多11个NLDN闪烁于2011年1月10日与单个LMA衍生的闪存相关联。另外,研究中的7个闪光中的七个包含零NLDN识别的闪光。从高大的人造物体(例如,通信塔)开始的34张闪光。在至少六次闪电闪烁中,NLDN检测到从云返回塔的返回行程,而不是初始向上的领导者。本研究还讨论了避雷与人造环境的互动,并提供了由地球静止运营环境卫星闪电映射器观察到的大雪内的闪电。

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