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Formation mechanism of great positive TEC disturbances prior to Wenchuan earthquake on May 12, 2008

机译:2008年5月12日汶川地震前TEC大正正扰动形成机理

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摘要

The problems of physical explanation and possible mechanisms of the seismo-ionospheric effects formation are under discussion now. There are proposed different mechanisms of such effects, for example, large- and small-scale internal gravity waves (IGWs), atmospheric electric field, electromagnetic fields and emissions. However, the appearance of local large-scale seismo-ionospheric anomalies in Total Electron Content (TEC) is possible to explain only by two mechanisms: an atmospheric electric field and/or small-scale IGWs. In this paper, the simulation results for reproduction of the observed seismo-ionospheric great positive effects in TEC prior to strong Wenchuan earthquake are presented. The obtained results confirm the proposed mechanism of seismo-ionospheric effects formation by the penetration of the seismogenic electric field from the atmosphere into the ionosphere. It is suggested that so great TEC enhancement observed 3 days prior to Wenchuan earthquake could be explained by combined action of seismogenic vertical electric field and IGWs generated by the solar terminator.
机译:现在正在讨论物理解释问题和地震电离层效应形成的可能机理。提出了这种影响的不同机制,例如,大型和小型内部重力波(IGW),大气电场,电磁场和辐射。但是,总电子含量(TEC)中局部大规模电离层异常的出现只能通过两种机制来解释:大气电场和/或小规模IGW。本文给出了模拟的重现汶川地震前电离层巨大正效应的模拟结果。所获得的结果证实了通过将地震电场从大气渗透到电离层中而形成的地震-电离层效应的机理。有人认为,汶川地震前三天观测到的如此大的TEC增强可以由地震垂直电场和太阳终结者产生的IGW的共同作用来解释。

著录项

  • 来源
    《Advances in space research》 |2011年第3期|p.488-499|共12页
  • 作者单位

    West Department of N. V. Pushkov IZMIRAN RAS, 41, Pobedy Av., 236010 Kaliningrad, Russia,Kaliningrad State Technical University, 1, Sovetsky Av., 236000 Kaliningrad, Russia;

    West Department of N. V. Pushkov IZMIRAN RAS, 41, Pobedy Av., 236010 Kaliningrad, Russia;

    West Department of N. V. Pushkov IZMIRAN RAS, 41, Pobedy Av., 236010 Kaliningrad, Russia;

    Fedorov Institute of Applied Geophysics, 9, Rostokinskaya Str., 129226 Moscow, Russia,Space Research Institute (IKI), 84132 Profsoyuznaya Str, 117997 Moscow, Russia;

    Beijing National Observatory of Space Environment, Institute of Geology and Geophysics, Chinese Academy of Sciences, 19, Bei Tu Cheng Xi Lu Chaoyang District, 100029 Beijing, China;

    AEROCOSMOS Scientific Center for Aerospace Monitoring, 4, Gorokhovsky lane, 105064 Moscow, Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    earthquake; seismo-ionospheric effects; electric field; internal gravity waves; numerical modeling;

    机译:地震;电离层效应;电场;内部重力波;数值模拟;
  • 入库时间 2022-08-17 13:23:49

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