负向上雷击在德国佩森伯格塔的电场

M. Manhardt, F. Heidler, K. Stimper
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引用次数: 12

摘要

本文的研究内容是对德国Peissenberg塔引发的35次负向上闪电的慢变电场及其伴随电流进行分析,其中34次为冬季向上闪电,只有1次为夏季向上闪电。似乎所有的冬季上升闪电都是在没有附近闪电活动(称为“自我触发”闪电)的情况下产生的,只有夏季闪电是由附近闪电活动(称为“他人触发”闪电)引发的。冬季上升闪电电场变化缓慢,呈快速上升趋势,上升时间为10 ~ 90%,算术平均值为13.8 ms。在达到最大值后,电场开始缓慢衰减,其特征为半上时间,其算术平均值为441 ms。输送到地面的电荷平均为44.8 C,最大为165 C,电场最大值平均为39.9 kV/m,最大值为64.5 kV/m。对于电场,由于地面物体产生的日冕和雷云中电荷的重新分配等恢复效应,阻止了更高的值。由于这些影响,10% -90%的上升时间、半值时间、电荷和电场最大值之间没有或只有弱相关性。通过现场磨机的额外测量,发现电场在几秒钟内恢复到起始水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The electric field of negative upward lightning strikes at the Peissenberg tower, Germany
Subject matter of this paper is the analysis of the slow-varying electric fields and the associated currents of the total of 35 negative upward lightning initiated by the Peissenberg tower, Germany. 34 of which were from winter upward lightning and only one from summer upward lightning. It appears that all of the winter upward lightning were initiated without nearby preceding lightning activity (called “self-initiated” lightning) and only the summer lightning was triggered by nearby lightning activity (called “other-triggered” lightning). The slow-varying electric fields of the winter upward lightning showed a fast rise characterized by the 10-to-90% risetime, with an arithmetic mean of 13.8 ms. After attaining the maximum, the electric field turned into a slow decay being characterized by the time on half value which was evaluated to having the arithmetic mean of 441 ms. Transported charges to ground were on average 44.8 C and on maximum 165 C. The maximum value of the electric field was 39.9 kV/m on average, with the highest value being 64.5 kV/m. For the electric fields, higher values were prevented by recovery effects such as the corona from objects at ground and the redistribution of the charge in the thundercloud. Due to these effects, no or only weak correlations were found between the 10-to-90% risetime, the time on half value, the charge, and the maximum of the electric field. From additional measurements with a field mill, it was found that the electric field recovers to the starting level within some seconds.
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