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LiOn Return Stroke Peak Current Analysis for Ground Strike Points in the Austrian Alps

机译:奥地利阿尔卑斯山区地面打击点的狮子返回冲程峰值电流分析

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This paper presents an analysis related to the research project “Lightning Observation in the Alps” (LiOn) carried out by Graz University of Technology in cooperation with the Austrian Lightning Detection and Information System (ALDIS). Atmospheric discharges were observed at 21 different measurement locations in Austria by using a video and field recording system. The system consists of two main components, a high speed video camera and a flat plate antenna. The recorded ground truth data should help to get additional information about atmospheric discharge processes, especially in the alpine area. For this analysis, a dataset of negative cloud-to-ground strokes of the measurement periods 2015, 2017 and 2018 was used. In this analysis, we compare peak currents of first return strokes (LLS flash data) with peak currents of first strokes in a GSP. The GSPs are determined manually by using the video data. We especially considered the relation of first initial (FI) peak currents versus subsequent (SU) peak currents. The stroke peak current versus the multiplicity for flashes and strokes per GSP was investigated too. For all the analyses in this paper, the Austrian Lightnig Location System (ALDIS) provided the data for the stroke peak currents. In 42 % of the flashes, at least one SU peak current in a flash shows a greater value compared to the FI stroke in this flash. Checking the peak currents within GSPs reveals 37 % with at least one SU stroke with a larger peak current than the FI stroke in the same GSP. The analysis of the percentage of SU strokes with peak currents greater than the FI stroke reveals the same value of 14 % for flashes and per GSPs. Regarding the analysis of FI peak currents versus the multiplicity, the results show an increase for both analyses leading to higher peak currents for the FI strokes exhibiting a larger multiplicity.
机译:本文介绍了与奥地利雷电检测和信息系统(ALDIS)合作的格拉茨技术大学进行的研究项目“闪电观测”研究项目“闪电观察”的分析。通过使用视频和现场记录系统,在奥地利的21个不同的测量位置观察到大气排放。该系统由两个主要组件,高速摄像机和平板天线组成。记录的地面真理数据应该有助于获得有关大气排放过程的其他信息,特别是在高山地区。对于此分析,使用了测量期2015,2017和2018的负云到地带的数据集。在该分析中,我们将首次返回中风(LLS闪存数据)的峰值电流与GSP中的第一笔画的峰值电流进行比较。通过使用视频数据手动确定GSP。我们特别考虑了第一初始(FI)峰值电流与后续(SU)峰值电流的关系。研究了行程峰值电流与每个GSP的闪光和笔画的多重性。对于本文的所有分析,奥地利Lightnig位置系统(ALDIS)提供了行程峰值电流的数据。在闪光的42%中,与该闪光灯中的闪电相比,闪光灯中的至少一个SU峰值电流显示出更大的值。检查GSP内的峰值电流显示37%,至少一个SU笔划,具有比相同GSP中的峰值电流更大的峰值电流。对峰值电流大于填缝的苏风百分比的分析显示出闪光和每个GSP的相同值14%。关于Fi峰值电流与多重性的分析,结果表明,两种分析的增加导致呈现较大的多个峰值电流的峰值电流。

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