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Seasonal forecasting of lightning and thunderstorm activity in tropical and temperate regions of the world

机译:世界热带和温带地区闪电和雷暴活动的季节性预报

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摘要

Thunderstorms are convective systems characterised by the occurrence of lightning. Lightning and thunderstorm activity has been increasingly studied in recent years in relation to the El Niño/Southern Oscillation (ENSO) and various other large-scale modes of atmospheric and oceanic variability. Large-scale modes of variability can sometimes be predictable several months in advance, suggesting potential for seasonal forecasting of lightning and thunderstorm activity in various regions throughout the world. To investigate this possibility, seasonal lightning activity in the world’s tropical and temperate regions is examined here in relation to numerous different large-scale modes of variability. Of the seven modes of variability examined, ENSO has the strongest relationship with lightning activity during each individual season, with relatively little relationship for the other modes of variability. A measure of ENSO variability (the NINO3.4 index) is significantly correlated to local lightning activity at 53% of locations for one or more seasons throughout the year. Variations in atmospheric parameters commonly associated with thunderstorm activity are found to provide a plausible physical explanation for the variations in lightning activity associated with ENSO. It is demonstrated that there is potential for accurately predicting lightning and thunderstorm activity several months in advance in various regions throughout the world.
机译:雷暴是对流系统,其特征是发生雷电。近年来,与厄尔尼诺/南方涛动(ENSO)以及其他各种大规模的大气和海洋变化模式有关的雷电和雷暴活动已得到越来越多的研究。有时可以提前几个月预测出大型的变化模式,这表明在全球范围内对季节性闪电和雷暴活动进行预报的潜力很大。为了调查这种可能性,我们在此考察了世界热带和温带地区的季节性雷电活动,并与许多不同的大规模变率模式相关。在所研究的七种变率模式中,ENSO与每个季节的闪电活动之间的关系最密切,而与其他变率模式的关系则相对较小。一年中一个或多个季节,ENSO变异性的量度(NINO3.4指数)与53%的位置的局部闪电活动显着相关。已发现通常与雷暴活动有关的大气参数变化为与ENSO有关的闪电活动变化提供了合理的物理解释。事实证明,在世界各地,提前几个月就可以准确预测闪电和雷暴活动。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Andrew J. Dowdy;

  • 作者单位
  • 年(卷),期 -1(6),-1
  • 年度 -1
  • 页码 20874
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
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