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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An evaluation of the Worldwide Lightning Location Network (WWLLN) using the National Lightning Detection Network (NLDN) as ground truth
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An evaluation of the Worldwide Lightning Location Network (WWLLN) using the National Lightning Detection Network (NLDN) as ground truth

机译:评估全球闪电位置网络(WWLLN)使用国家闪电检测网络(NLDN)地面真理

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摘要

A performance assessment of the Worldwide Lightning Location Network (WWLLN) is presented using the National Lightning Detection Network (NLDN) as ground truth, over unprecedented time and spatial scales. The study spans 3 years, from 5 April 2006 to 31 March 2009, throughout the contiguous United States. The capabilities of the network are shown to improve greatly from the first to the third year of the study, with an overall detection efficiency of cloud-to-ground flashes increasing from 3.88% in 2006 –2007 to 10.30% in 2008-2009. The WWLLN cloud-to-ground detection efficiency is found to be strongly dependent on peak current and polarity, attaining values larger than 10% (35%) for currents stronger than +35 kA (-130 kA) and values less than 2% for currents between 0 and -10 kA. The location accuracy is found to have a northward and westward bias, with average location errors of 4.03 km in the north-south and 4.98 km in the east-west directions, respectively. The WWLLN is shown to have strong limitations in capturing the diurnal cycle, missing both the timing of the maximum and minimum lightning activity (around 1600 and 0900 LT, respectively), and the amplitude of the cycle as well. It is found that in 3 h intervals, the number of flashes in the WWLLN has some proportionality to the number of flashes in the NLDN, suggesting that the WWLLN has strong potential for meteorological applications.
机译:世界范围内的性能评估闪电位置网络(WWLLN)使用全国闪电探测网络(NLDN)地面实况,在前所未有的时间和空间尺度。4月5日2006年到2009年3月31日,在整个连续的美国。网络大大提高的第一个研究的第三年,一个地的整体检测效率-2007年从2006年的3.88%增加2008 - 2009年的10.30%。检测效率是强烈依赖于峰值电流和极性,实现电流的值大于10% (35%)比35 + kA (-130 kA)和价值观更少超过2%的电流在0和-10 kA之间。定位精度是发现有一个向北和西方偏见,平均位置错误南北的4.03公里和4.98公里东西方向,分别。显示在捕捉有很强的局限性昼夜循环,失踪的时机最大和最小的闪电活动(约分别为1600和0900 LT),振幅的周期。3 h的间隔,闪光的数量WWLLN的数量有一定的比例NLDN闪光,这表明WWLLN有很强的潜在的气象应用程序。

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