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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Analysis of the Spatial Nonuniformity of the Electric Field in Spectroscopic Diagnostic Methods of Atmospheric Electricity Phenomena
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Analysis of the Spatial Nonuniformity of the Electric Field in Spectroscopic Diagnostic Methods of Atmospheric Electricity Phenomena

机译:大气电力现象光谱诊断方法中电场空间不均匀性分析

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摘要

The spatial nonuniformity of the electric field in air discharges, such as streamers, can influence the accuracy of spectroscopic diagnostic methods and hence the estimation of the peak electric field. In this work, we use a self-consistent streamer discharge model to investigate the spatial nonuniformity in streamer heads and streamer glows.We focus our analysis on air discharges at atmospheric pressure and at the low pressure of the mesosphere. This approach is useful to investigate the spatial nonuniformity of laboratory discharges as well as sprite streamers and blue jet streamers, two types of transient luminous events taking place above thunderclouds. This characterization of the spatial nonuniformity of the electric field in air discharges allows us to develop two different spectroscopic diagnostic methods to estimate the peak electric field in cold plasmas. The commonly employed method to derive the peak electric field in streamer heads underestimates the electric field by about 40–50% as a consequence of the high spatial nonuniformity of the electric field. Our diagnostic methods reduce this underestimation to about 10–20%. However, our methods are less accurate than previous methods for streamer glows, where the electric field is uniformly distributed in space. Finally, we apply our diagnostic methods to the measured optical signals in the second positive system of N_2 and the first negative system of N_2~+ of sprites recorded by Armstrong et al. (1998, https://doi.org/10.1016/S1364-6826(98)00026-1) during the SPRITE's 1995 and 1996 campaigns.
机译:空气排放中的电场的空间不均匀性,例如飘带,可以影响光谱诊断方法的准确性,从而影响峰值电场的估计。在这项工作中,我们使用自我一致的拖缆放电模型来研究闻闻室头的空间不均匀性,拖飘玻璃。我们集中在大气压下的空气排放和介质层的低压分析。这种方法可用于研究实验室排放的空间不均匀性以及精灵飘带和蓝射流,两种类型的瞬态发光事件在雷德罗德上。空气排放中电场的空间不均匀性的这种表征允许我们开发两种不同的光谱诊断方法来估计冷等离子体中的峰值电场。由于电场的高空间不均匀性,速度采用的速度方法衍生出飘销头中的峰值电场低估了电场约40-50%。我们的诊断方法将其低估降低至约10-20%。然而,我们的方法比以前的炉子发光方法更准确,电场在空间中均匀地分布。最后,我们将诊断方法应用于N_2的第二正系统中的测量光信号和Armstrong等人记录的N_2〜+的第一负系统。 (1998,https://doi.org/10.1016/S1364-6826(98)00026-1)在Sprite 1995年和1996年的竞选期间。

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