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Diurnal variation of the global electric circuit from clustered thunderstorms

机译:全球昼夜变化的电路从集群雷暴

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The diurnal variation of the global electric circuit is investigated using theWorldWide Lightning Location Network (WWLLN), which has been shown to identify nearly all thunderstorms (using WWLLN data from 2005). To create an estimate of global electric circuit activity, a clustering algorithm is applied to the WWLLN data set to identify global thunderstorms from 2010 to 2013. Annual, seasonal, and regional thunderstorm activity is investigated in this new WWLLN thunderstorm data set in order to estimate the source behavior of the global electric circuit. Through the clustering algorithm, the total number of active thunderstorms are counted every 30 min creating a measure of the global electric circuit source function. The thunderstorm clusters are compared to precipitation radar data from the Tropical Rainfall Measurement Mission satellite and with case studies of thunderstorm evolution. The clustering algorithm reveals an average of 660 ± 70 thunderstorms active at any given time with a peak-to-peak variation of 36%. The highest number of thunderstorms occurs in November (720 ± 90), and the lowest number occurs in January (610 ± 80). Thunderstorm cluster and electrified storm cloud activity are combined with thunderstorm overflight current measurements to estimate the global electric circuit thunderstorm contribution current to be 1090 ± 70 A with a variation of 24%. By utilizing the global coverage and high time resolution of WWLLN, the total active thunderstorm count and current is shown to be less than previous estimates based on compiled climatologies.
机译:全球电力的昼夜变化电路使用theWorldWide调查闪电位置网络(WWLLN)识别几乎所有的雷暴(使用WWLLN数据从2005年)。全球电路活动的估计聚类算法应用于WWLLN数据将识别全球雷暴从2010年2013. 活动是在这个新的WWLLN调查雷暴数据集来估计源全球电路的行为。通过聚类算法,雷暴统计每个数量的活跃30分钟创建一个全球电气测量电路源函数。集群与降水雷达数据进行比较从热带降雨测量任务卫星和雷暴的案例研究进化。660±70年平均雷暴活动在任何给定时间与峰变化的36%。最多的雷暴发生在11月(720±90),最低数量80年1月(610±)。电气化暴风云活动相结合与雷暴飞越领空电流测量估计全球电路当前为1090±70雷暴的贡献变异的24%。全球覆盖和高时间分辨率的WWLLN,雷暴数和总活跃当前显示小于之前估计基于编译气候学。

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