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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Registration of X-rays at 2500m altitude in association with lightning flashes and thunderstorms
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Registration of X-rays at 2500m altitude in association with lightning flashes and thunderstorms

机译:与闪电和雷暴相关的2500m高度X射线记录

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摘要

Electric fields and high-energy radiation of natural lightning measured at close range from a mountaintop tower are discussed. In none of the 12 negative cloud-to-ground upward flashes were X-rays observed. Also no energetic radiation was found in one negative upward leader at close range (20 m). In the first of two consecutive negative cloud-to-ground flashes, X-rays were detected during the last ~1.75 ms of the leader. During the time of energetic radiation in the flash an intense burst of intracloud VHF sources was located by the interferometers. The X-ray production is attributed to the high electric field runaway electron mechanism during leader stepping. Even though the second flash struck closer than the previous one, no X-rays were detected. The absence of energetic radiation is attributed to being outside of the beam of X-ray photons from the leader tip or to the stepping process not allowing sufficiently intense electric fields ahead of the leader tip. High-speed video of downward negative leaders at the time when X-rays are commonly detected on the ground revealed the increase of speed and luminosity of the leader. Both phenomena allow higher electric fields at the leader front favoring energetic radiation. Background radiation was also measured during thunderstorms. The count rate of a particular day is presented and discussed. The increases in the radiation count rate are more coincident with radar reflectivity levels above ~30 dBZ than with the total lightning activity close to the site. The increases of dose are attributed to radon daughter-ion precipitation.
机译:讨论了从山顶塔近距离测得的自然闪电的电场和高能辐射。在12个负的从地面到地面的向上闪光中,没有一个观察到X射线。在近距离(20 m)处的一个负向上的前导中也没有发现高能辐射。在两次连续的负云对地闪烁中的第一个中,在前导的最后〜1.75毫秒内检测到X射线。在闪光灯中的高能辐射期间,干涉仪定位了强烈的云内VHF源爆发。 X射线的产生归因于前导步进过程中的高电场失控电子机理。即使第二次闪光比前一次闪光更近,也没有检测到X射线。高能辐射的缺乏归因于位于来自先导尖端的X射线光子束之外或步进过程,不允许在先导尖端之前有足够强的电场。当在地面上普遍检测到X射线时,向下的负引导者的高速视频显示了引导者的速度和亮度的增加。两种现象都允许领导者前沿的较高电场有利于高能辐射。雷雨期间也测量了背景辐射。介绍并讨论了特定日期的计数率。高于30 dBZ以上的雷达反射率水平时,辐射计数率的增加与靠近该地点的总雷电活动更相符。剂量的增加归因于ra子离子的沉淀。

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