太平洋上空白湖丸R/V大气电场、气溶胶和云的同时观测

M. Kamogawa, Kosei Ohhara, Sayako Ueda, K. Miura, K. Yajima, S. Hashimoto, M. Nakamura, Y. Kakinami, H. Furutani, M. Uematsu
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引用次数: 3

摘要

导电固体土和电离层之间存在电离层电位,电离层电位约为250千伏。电离层电势是由带正电的电离层和带负电的固体土形成的球壳电容产生的。在晴朗天气下,全球雷暴活动和空气-大地电流分别对电容进行充放电。这种大规模电路称为全局电路。最近,有人指出电离层电势的变化与全球气候变化有关,因此一些科学家开始重新审视这一传统话题。为了促进电离层电位的重新测量,我们通过同时观测太平洋上空白湖丸号(Hakuho Maru)上的地面大气电场、气溶胶和云,表明地面测量受大气云、气溶胶等高度影响的大气电场仍然是测量电离层电位变化的有用工具。在得到卡内基曲线的时间段内,观测到的AEF与大气气溶胶浓度没有相关性。最合理的解释是观测到的AEF变化反映了电离层电位的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous Observations of Atmospheric Electric Field, Aerosols, and Clouds on the R/V Hakuho Maru over the Pacific Ocean
There is an ionospheric potential between conductive solid-earth and ionosphere which reaches approximately 250 kV. The ionospheric potential is generated by the spherical shell capacitance of which is formed by positively charged ionosphere and negatively charged solid-earth. The capacitance is charged and discharged by the global thunderstorm activity and air-earth current in the fair weather, respectively. This large-scale electric circuit is termed a global electric circuit. Recently, it is pointed out that the variation of ionospheric potential is associated with global climate change, so that some of scientists started revisiting this traditional topic. In order to promote their resurvey, we show that a ground-based measurement of atmospheric electric field highly affected by atmospheric clouds, aerosols, and so on is still a useful tool to measure the variation of ionospheric potential through the simultaneous observations of ground-based atmospheric electric field, aerosols, and clouds on the R/V Hakuho Maru over the Pacific Ocean. In the period we obtained Carnegie curve, the observed AEF did not correlate to atmospheric aerosol concentration. The most plausible interpretation is that the observed variation of AEF reflected the variation of ionosphere potential.
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