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Physical bases of the generation of short-term earthquake precursors: A complex model of ionization-induced geophysical processes in the lithosphere-atmosphere-ionosphere-magnetosphere system

机译:短期地震前兆生成的物理基础:岩石圈-大气-电离层-磁层系统中电离引起的地球物理过程的复杂模型

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This paper describes the current understanding of the interaction between geospheres from a complex set of physical and chemical processes under the influence of ionization. The sources of ionization involve the Earth's natural radioactivity and its intensification before earthquakes in seismically active regions, anthropogenic radioactivity caused by nuclear weapon testing and accidents in nuclear power plants and radioactive waste storage, the impact of galactic and solar cosmic rays, and active geophysical experiments using artificial ionization equipment. This approach treats the environment as an open complex system with dissipation, where inherent processes can be considered in the framework of the synergistic approach. We demonstrate the synergy between the evolution of thermal and electromagnetic anomalies in the Earth's atmosphere, ionosphere, and magnetosphere. This makes it possible to determine the direction of the interaction process, which is especially important in applications related to short-term earthquake prediction. That is why the emphasis in this study is on the processes proceeding the final stage of earthquake preparation; the effects of other ionization sources are used to demonstrate that the model is versatile and broadly applicable in geophysics.
机译:本文描述了当前对电离影响下一组复杂的物理和化学过程对地球球之间相互作用的理解。电离源包括地球的自然放射性及其在地震活跃地区地震前的加剧,核武器测试和核电厂事故以及放射性废物储存引起的人为放射性,银河和太阳宇宙射线的影响以及活跃的地球物理实验使用人工电离设备。这种方法将环境视为具有耗散的开放式复杂系统,可以在协同方法的框架内考虑固有过程。我们证明了地球大气层,电离层和磁层中热和电磁异常的演化之间的协同作用。这使得确定相互作用过程的方向成为可能,这在与短期地震预测有关的应用中尤其重要。因此,本研究的重点是准备地震的最后阶段的过程。其他电离源的影响被用来证明该模型是通用的,在地球物理学中具有广泛的适用性。

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