首页> 外文会议>Environmental Electromagnetics, 2003. CEEM 2003. Proceedings. Asia-Pacific Conference on >Observation of sprites over the Sea of Japan and conditions for lightning-induced sprites in winter
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Observation of sprites over the Sea of Japan and conditions for lightning-induced sprites in winter

机译:日本海上精灵的观测及冬季雷电精灵的条件

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Sprites are a newly discovered optical emission in the mesosphere over large thunderstorms. We have succeeded in observing sprites for winter lightning in the Hokuriku area (Japan Sea side) of Japan in the winter of 2001/2002. The optical results on three days are compared with the corresponding characteristics of parent (causative) lightning with particular attention to the significant differences between Hokuriku winter lightning and the more widely studied continental lightning. Despite significant differences with Hokuriku winter lightning, we have found nearly the same sprite properties as already observed in continental USA, with one significant difference (simpler shape for Hokuriku winter sprite). We also discuss the criteria for sprite occurrence. Specifically, two similar criteria are found: (1) cloud-to-ground discharges of positive polarity; (2) the presence of a certain threshold in vertical charge moment (200-300 C.km) (roughly consistent with that for continental USA). Mesoscale convective systems are not necessary to store the charge necessary for sprites, but the parent Hokuriku winter clouds are substantially smaller than the minimum scale for sprite occurrence in continental lightning, but they are larger in area than ordinary summer thunderclouds. However, there may exist another condition, such as clustering or the self-organizing effect of thunderclouds, for sprite production.
机译:精灵是在大雷暴天气中层中新发现的一种光发射。在2001/2002年冬季,我们成功地观测了日本北陆地区(日本海一侧)的冬季闪电雪碧。将三天的光学结果与母体(致使)闪电的相应特征进行比较,尤其要注意北陆冬季闪电与研究更广泛的大陆闪电之间的显着差异。尽管北陆冬季闪电存在显着差异,但我们发现的精灵属性几乎与美国大陆已经观察到的相同,但有一个显着差异(北陆冬季精灵的形状更简单)。我们还将讨论精灵发生的标准。具体而言,发现了两个类似的标准:(1)正极性的云对地放电; (2)垂直电荷矩(200-300 C.km)中存在一定阈值(与美国本土大致相同)。中尺度对流系统不是必要的,以存储子画面所需的电荷,但是北陆冬季母云远小于大陆闪电中子画面发生的最小尺度,但是它们的面积比普通夏季雷云大。但是,对于子画面生成,可能还存在其他条件,例如群集或雷云的自组织效应。

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