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FDTD analysis of ELF wave propagation and Schumann resonances for a subionospheric waveguide model

机译:亚电离层波导模型的ELF波传播和Schumann共振的FDTD分析

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摘要

The space formed by the ground and ionosphere is known to act as a resonator for extremely low frequency (ELF) waves. Lightning discharges trigger this global resonance, which is known as Schumann resonance. Even though the inhomogeneity (like day-night asymmetry, local perturbation, etc.) is important for such a subionospheric ELF propagation, the previous analyses have been always made by some approximations because the problem is too complicated to be analyzed by any exact full-wave analysis. This paper presents the first application of the conventional numerical FDTD method to such a subionospheric ELF wave propagation, in which any kind of inhomogeneity can be included in this analysis. However, the present paper is intended to demonstrate the workability of this method only for a uniform waveguide (without day-night asymmetry), by comparing the results from this method with those by the corresponding analytical method.
机译:已知由地面和电离层形成的空间可充当极低频(ELF)波的谐振器。雷电放电会触发这种整体共振,这被称为舒曼共振。尽管不均匀性(如昼夜不对称,局部扰动等)对于这种亚电离层ELF传播很重要,但先前的分析始终是通过一些近似方法进行的,因为问题太复杂了,无法通过任何精确的全波分析来解决。波分析。本文介绍了常规数值FDTD方法在这种亚电离层ELF波传播中的首次应用,在该分析中可以包括任何类型的不均匀性。但是,本白皮书旨在通过将这种方法的结果与相应的分析方法的结果进行比较,来证明该方法仅适用于均匀波导(不存在昼夜不对称)的可行性。

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