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Characteristics of Sprite-Producing Positive Cloud-to-Ground Lightning during the 19 July 2000 STEPS Mesoscale Convective Systems

机译:2000年7月19日STEPS中尺度对流系统中产生子画面的正云对地闪电的特征

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During the summer of 2000, the Severe Thunderstorm Electrification and Precipitation Study (STEPS) program deployed a three-dimensional Lightning Mapping Array (LMA) near Goodland, Kansas. Video confirmation of sprites triggered by lightning within storms traversing the LMA domain were coordinated with extremely low frequency (ELF) transient measurements in Rhode Island and North Carolina. Two techniques of estimating changes in vertical charge moment (M_q) yielded averages of ~800 and ~950 C km for 13 sprite-parent positive polarity cloud-to-ground strokes (+CGs). Analyses of the LMA's very high frequency (VHF) lightning emissions within the two mesoscale convective systems (MCSs) show that +CGs did not produce sprites until the centroid of the maximum density of lightning radiation emissions dropped from the upper part of the storm (7-11.5 km AGL) to much lower altitudes (2-5 km AGL). The average height of charge removal (Z_q) from 15 sprite-parent +CGs during the late mature phase of one MCS was 4.1 km AGL. Thus, the total charges lowered by sprite-parent +CGs were on the order of 200 C. The regional 0℃ isotherm was located at about 4.0 km AGL. This suggests a possible linkage between sprite-parent CGs and melting-layer/brightband charge production mechanisms in MCS stratiform precipitation regions. These cases are supportive of the conceptual MCS sprite-production models previously proposed by two of the authors (Lyons and Williams).
机译:在2000年夏季,严重雷暴电气化和降水研究(STEPS)计划在堪萨斯州古德兰德附近部署了三维雷电测绘阵列(LMA)。在穿越LMA域的风暴中,由闪电触发的子画面的视频确认与罗德岛州和北卡罗来纳州的极低频(ELF)瞬态测量相协调。两种估算垂直电荷矩(M_q)变化的技术得出的13个Sprite-parent正极性云对地笔触(+ CGs)的平均值分别为〜800和〜950 C km。对两个中尺度对流系统(MCSs)中LMA的甚高频(VHF)雷电发射的分析表明,直到最大雷电辐射发射的重心从暴风雨的上部下降(+7)时,+ CG才产生子画面(7) -11.5公里AGL)到更低的高度(2-5公里AGL)。一台MCS的成熟后期,来自15个子代-母体+ CG的平均电荷去除高度(Z_q)为4.1 km AGL。因此,通过子代母体+ CGs降低的总电荷约为200C。区域0℃等温线位于约4.0 km AGL。这表明在MCS层状降水区域中,子代母体CG与熔融层/宽带电荷产生机制之间可能存在联系。这些案例支持先前由两位作者(Lyons和Williams)提出的概念性MCS子画面生成模型。

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