电离层电场扰动与氡辐射的增加

IF 1.4 4区 化学 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
V. V. Denisenko, E. V. Rozanov, K. V. Belyuchenko, F. S. Bessarab, K. S. Golubenko, M. V. Klimenko
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引用次数: 0

摘要

摘要由于氡放射量的增加,空气表层的电导率也随之增加,从而导致低层大气中的电场发生变化,根据某些假设,电离层中的电场也会发生变化。关于利用这种电离层扰动作为地震前兆的可能性,有一些众所周知的建议。在本研究中,电离层电场是在由大气层(包括电离层)组成的导体准静态模型框架内计算的。研究还考虑了随着氡含量的增加,地表空气电导率降低这一矛盾观点的后果。结果表明,即使氡散发量极大,计算得出的电离层电场扰动也比假定的地震前兆小三到四个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Ionospheric Electric Field Perturbation with an Increase in Radon Emanation

The Ionospheric Electric Field Perturbation with an Increase in Radon Emanation

The Ionospheric Electric Field Perturbation with an Increase in Radon Emanation

Due to the increase in radon emanation, the conductivity in the surface layer of air increases, which causes variations in the electric fields in the low atmosphere and according to some hypotheses in the ionosphere. There are well-known proposals on the possibility of using such ionospheric disturbances as precursors of earthquakes. In this study, the ionospheric electric fields are calculated in the framework of a quasi-stationary model of the conductor consisting of the atmosphere, including the ionosphere. The consequences of the paradoxical point of view on the decrease in the conductivity of surface air with an increase in radon content are also considered. It is shown that even with extreme radon emanation, the obtained calculated perturbations of the ionospheric electric field are three to four orders of magnitude smaller than the supposed precursors of earthquakes.

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来源期刊
Russian Journal of Physical Chemistry B
Russian Journal of Physical Chemistry B 化学-物理:原子、分子和化学物理
CiteScore
2.20
自引率
71.40%
发文量
106
审稿时长
4-8 weeks
期刊介绍: Russian Journal of Physical Chemistry B: Focus on Physics is a journal that publishes studies in the following areas: elementary physical and chemical processes; structure of chemical compounds, reactivity, effect of external field and environment on chemical transformations; molecular dynamics and molecular organization; dynamics and kinetics of photoand radiation-induced processes; mechanism of chemical reactions in gas and condensed phases and at interfaces; chain and thermal processes of ignition, combustion and detonation in gases, two-phase and condensed systems; shock waves; new physical methods of examining chemical reactions; and biological processes in chemical physics.
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