首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Relationships among Narrow Bipolar Events, “total” lightning, and radar-inferred convective strength in Great Plains thunderstorms
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Relationships among Narrow Bipolar Events, “total” lightning, and radar-inferred convective strength in Great Plains thunderstorms

机译:大平原雷暴中窄双极事件,“总”雷电和雷达推断对流强度之间的关系

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Narrow Bipolar Events (NBEs) are a recently discovered distinct class of intracloud lightning discharges whose associated processes produce the most powerful very high frequency (VHF) radiation observed from lightning. NBEs are thus the prime candidate for proposed satellite-based VHF global lightning mapping and storm tracking missions. In this study, we offer a detailed evaluation of the Great Plains Los Alamos Sferic Array (LASA). We then statistically compare NBE rates to non-NBE lightning rates measured by both the LASA and the National Lightning Detection Network (NLDN) and to NEXRAD radar-inferred metrics of convective strength for thunderstorms in the Great Plains from May to July 2005. We find strong correlations between total lightning rate and convective strength, especially in terms of the height of 30 dBZ radar echo. However, we find much weaker correlations between NBE rate and non-NBE lightning rate and between NBE rate and radar-inferred convective strength. Though NBEs occur in the same storms as other lightning, they cluster more closely in both space and time and may be indicative of specific types of storms and/or specific stages in convective development. Indeed, we find that NBEs are more prevalent in, and perhaps indicative of, the strongest convection. However, even the strongest convection (as inferred by radar) does not always produce NBEs. We compare these results to past studies of NBEs which were based in Florida. We also briefly discuss the implications of these results for satellite-based VHF lightning detection.
机译:窄双极事件(NBE)是最近发现的不同类别的云内闪电放电,其相关过程会产生从闪电观察到的最强大的甚高频(VHF)辐射。因此,NBE是提议的基于卫星的VHF全球闪电测绘和风暴跟踪任务的主要候选者。在这项研究中,我们提供了大平原洛斯阿拉莫斯Sferic阵列(LASA)的详细评估。然后,我们将2005年5月至2005年7月大平原地区雷暴对流强度的NBE率与LASA和国家闪电检测网络(NLDN)测得的非NBE闪电率进行统计比较,并与NEXRAD雷达得出的对流强度指标进行了比较。总雷电率与对流强度之间有很强的相关性,尤其是在30 dBZ雷达回波的高度方面。但是,我们发现NBE速率与非NBE闪电速率之间以及NBE速率与雷达推断对流强度之间的相关性弱得多。尽管NBE与其他闪电发生在同一风暴中,但它们在时空上更紧密地聚集,并且可能指示特定类型的风暴和/或对流发展的特定阶段。的确,我们发现NBE在最强的对流中更为普遍,或者可能指示最强的对流。但是,即使是最强的对流(由雷达推断)也不会总是产生NBE。我们将这些结果与以前在佛罗里达州的NBE的研究进行了比较。我们还将简要讨论这些结果对基于卫星的VHF雷电检测的影响。

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