Electromagnetic ULF Fields from an Underground Seismic Source on the Earth’s Surface and in the Ionosphere

N. Mazur, E. Fedorov, V. A. Pilipenko, K. E. Borovleva
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Abstract

A theoretical formalism has been developed to calculate the electromagnetic fields generated in the atmosphere–ionosphere system by a finitelength underground horizontal current source. A numerical model with a realistic profile of the ionosphere in a vertical geomagnetic field has been designed based on this theory. It is shown that the apparent impedance of the electromagnetic field created by an underground source on the Earth’s surface is one order of magnitude higher than the Earth’s impedance, which can be used to discriminate perturbations from seismogenic sources. The presented results of numerical modeling allow us to relate perturbations created by a large-scale underground source in the Earth surface magnetic field and in the electric field in the ionosphere. Based on these model estimates it is concluded that many of the ULF electric field perturbations detected in satellite data before earthquakes cannot be attributed to direct emission from seismogenic sources.
来自地球表面和电离层地下地震源的电磁超低频场
建立了一个理论形式主义来计算有限长度的地下水平电流源在大气层-电离层系统中产生的电磁场。根据这一理论,设计了一个具有垂直地磁场中电离层真实轮廓的数值模型。结果表明,地表地下源产生的电磁场视阻抗比地球阻抗高一个数量级,可用来区分地震源扰动。数值建模的结果使我们能够将大规模地下源在地球表面磁场和电离层电场中产生的扰动联系起来。根据这些模型估算得出的结论是,在地震前的卫星数据中探测到的许多超低频电场扰动不能归因于地震源的直接发射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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