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Vertical profile of atmospheric conductivity that matches Schumann resonance observations

机译:大气电导率的垂直分布与舒曼共振观测相符

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摘要

We introduce the vertical profile of atmospheric conductivity in the range from 2 to 98 km. The propagation constant of extremely low frequency (ELF) radio waves was computed for this profile by using the full wave solution. A high correspondence is demonstrated of the data thus obtained to the conventional standard heuristic model of ELF propagation constant derived from the Schumann resonance records performed all over the world. We also suggest the conductivity profiles for the ambient day and ambient night conditions. The full wave solution technique was applied for obtaining the corresponding frequency dependence of propagation constant relevant to these profiles. By using these propagation constants, we computed the power spectra of Schumann resonance in the vertical electric field component for the uniform global distribution of thunderstorms and demonstrate their close similarity in all the models. We also demonstrate a strong correspondence between the wave attenuation rate obtained for these conductivity profiles and the measured ones by using the ELF radio transmissions.
机译:我们介绍了大气电导率在2至98公里范围内的垂直分布。通过使用全波解决方案为此配置文件计算了极低频(ELF)无线电波的传播常数。如此获得的数据与从世界各地进行的舒曼共振记录得出的ELF传播常数的常规标准启发式模型得到的数据高度吻合。我们还建议在白天和夜晚环境下使用电导率曲线。应用全波求解技术来获得与这些剖面有关的传播常数的频率依赖性。通过使用这些传播常数,我们计算了雷暴的均匀全局分布在垂直电场分量中的舒曼共振功率谱,并证明了它们在所有模型中的相似性。我们还证明了通过使用ELF无线电传输,针对这些电导率分布图获得的波衰减率与测量值之间的强相关性。

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