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Inverted-polarity electrical structures in thunderstorms in the Severe Thunderstorm Electrification and Precipitation Study (STEPS)

机译:雷暴电气化和降水研究(STEPS)中雷暴中的极性反转电子结构

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Balloon-borne electric field soundings and lightning mapping data have been analyzed for three of the storms that occurred in the Severe Thunderstorm Electrification and Precipitation Study field program in 2000 to determine if the storms had inverted-polarity electrical structures. The polarities of all or some of the vertically stacked charge regions in such storms are opposite to the polarities observed at comparable heights in normal storms. Analyses compared the charge structures inferred from electric field soundings in the storms with charges inferred from three-dimensional lightning mapping data. Charge structures were inferred from electric field profiles by combining the one-dimensional approximation of Gauss's law with additional information from three-dimensional patterns in the electric field vectors. The three different ways of inferring the charge structure in the storms were found to complement each other and to be consistent overall. Charge deposition by lightning possibly occurred and increased the charge complexity of one of the storms. Many of the cloud flashes in each case were inverted-polarity flashes. Two storms produced ground flash activity comprised predominantly of positive ground flashes. One storm, which was an isolated thunderstorm, produced inverted-polarity cloud flashes, but no flashes to ground. The positive and negative thunderstorm charge regions were found at altitudes where, respectively, negative and positive charge would be found in normal-polarity storms. Thus, we conclude that these storms had anomalous and inverted-polarity electrical structures. Collectively, these three cases (along with the limited cases in the refereed literature) provide additional evidence that thunderstorms can have inverted-polarity electrical structures.
机译:对于2000年发生的“雷暴电气化和降水研究”野外计划中发生的三场暴风雨,已经对气球传播的电场测深和闪电映射数据进行了分析,以确定这些暴风雨是否具有极性相反的电气结构。在此类风暴中,所有或一些垂直堆叠的电荷区域的极性与正常风暴中在相当高度处观察到的极性相反。分析将风暴中的电场探测推断出的电荷结构与三维闪电测绘数据推断出的电荷进行了比较。通过将高斯定律的一维近似与来自电场矢量中三维模式的附加信息相结合,可以从电场分布中推断出电荷结构。发现在暴风雨中推论电荷结构的三种不同方法相互补充,并且总体上是一致的。雷电可能会造成电荷沉积,并增加了其中一场风暴的电荷复杂性。在每种情况下,许多云闪光是极性反转的闪光。两次风暴产生了地面闪光活动,主要由正地面闪光构成。一场风暴是孤立的雷暴,产生了极性反转的云闪光,但没有地面闪光。在正极性风暴中分别会发现负电荷和正电荷的海拔高度发现了正和负雷暴电荷区域。因此,我们得出结论,这些风暴具有异常和极性反转的电子结构。总的来说,这三个案例(连同参考文献中的有限案例)提供了额外的证据,表明雷暴可以具有极性相反的电子结构。

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