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Spatio-temporal dimension of lightning flashes based on three-dimensional Lightning Mapping Array

机译:基于三维闪电映射阵列的闪电时空维数

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摘要

3D mapping system like the LMA - Lightning Mapping Array - are a leap forward in lightning observation. LMA measurements has lead to an improvement on the analysis of the fine structure of lightning, allowing to characterize the duration and maximum extension of the cloud fraction of a lightning flash. During several years of operation, the first LMA deployed in Europe has been providing a large amount of data which now allows a statistical approach to compute the full duration and horizontal extension of the in-cloud phase of a lightning flash. The “Ebro Lightning Mapping Array” (ELMA) is used in the present study. Summer and winter lighting were analyzed for seasonal periods (Dec–Feb and Jun–Aug). A simple method based on an ellipse fitting technique (EFT) has been used to characterize the spatio-temporal dimensions from a set of about 29,000 lightning flashes including both summer and winter events. Results show an average lightning flash duration of 440 ms (450 ms in winter) and a horizontal maximum length of 15.0 km (18.4 km in winter). The uncertainties for summer lightning lengths were about ± 1.2 km and ± 0.7 km for the mean and median values respectively. In case of winter lightning, the level of uncertainty reaches up to 1 km and 0.7 km of mean and median value. The results of the successful correlation of CG discharges with the EFT method, represent 6.9% and 35.5% of the total LMA flashes detected in summer and winter respectively. Additionally, the median value of lightning lengths calculated through this correlative method was approximately 17 km for both seasons. On the other hand, the highest median ratios of lightning length to CG discharges in both summer and winter were reported for positive CG discharges.
机译:像LMA一样的3D映射系统-闪电映射阵列-是闪电观察中的飞跃。 LMA测量已导致对闪电的精细结构的分析有所改进,从而可以表征雷电云的持续时间和最大程度的扩展。在运行的几年中,欧洲部署的第一个LMA一直在提供大量数据,现在允许采用统计方法来计算闪电的云​​内阶段的完整持续时间和水平扩展。在本研究中使用了“埃布罗闪电映射阵列”(ELMA)。分析了夏季和冬季的季节性照明(12月至2月和6月至8月)。一种基于椭圆拟合技术(EFT)的简单方法已被用来表征包括夏季和冬季事件在内的大约29,000次闪电中的时空尺度。结果显示平均闪电持续时间为440毫秒(冬季为450毫秒),水平最大长度为15.0公里(冬季为18.4公里)。夏季雷电长度的平均值和中值的不确定度分别约为±1.2 km和±0.7 km。在冬季闪电的情况下,不确定性水平可达1 km,平均值和中位数为0.7 km。 CG放电与EFT方法成功关联的结果分别占夏季和冬季检测到的LMA闪光总数的6.9%和35.5%。此外,通过该相关方法计算的两个季节的雷电长度中值约为17 km。另一方面,夏季和冬季的CG放电阳性的雷电长度与CG放电的中值比率最高。

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