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首页> 外文期刊>Russian journal of physical chemistry, B. >Simulation of seismo-ionospheric effects initiated by internal gravity waves
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Simulation of seismo-ionospheric effects initiated by internal gravity waves

机译:内部重力波引发的电离层效应的模拟

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Experimental studies have repeatedly demonstrated that, a few days before a strong earthquake, local increases (sometimes decreases) in the electron density in the ionosphere over the epicentral area emerge. Simulations with the help of the GSM TIP (global self-consistent model "Thermosphere-Ionosphere-Protonosphere") and UAM (Upper Atmosphere Model) models show that account of local disturbances of the zonal electric fields makes it possible to reproduce the morphology of ionospheric disturbances. However, these model experiments do not explain the formation of such ionospheric features over the epicentral area of the impending earthquake. In this paper, we propose a mechanism for the formation of ionospheric disturbances before strong earthquakes due to propagation and dissipation of small-scale internal gravity waves (IGWs) in the upper atmosphere. Using the GSM TIP model, we calculated the ionospheric parameters with account of small-scale IGWs in the near-epicenter area. It is shown that disturbances in the TEC (total electron content) predicted by calculations are in satisfactory agreement with observations from GPS (Global Position System) satellites before the strong mid-latitude earthquake in Greece on January 8, 2006.
机译:实验研究反复表明,在强烈地震发生前几天,震中区上方电离层中的电子密度出现局部增加(有时减少)的现象。借助GSM TIP(全球自洽模型“热层-电离层-质子层”)和UAM(上层大气模型)的模拟表明,考虑了区域电场的局部扰动,可以重现电离层的形态干扰。但是,这些模型实验不能解释即将发生地震的震中区域上这种电离层特征的形成。在本文中,我们提出了一种机制,该机制是由于高层内部小尺度内部重力波(IGW)的传播和消散而在强地震之前形成电离层扰动的机制。使用GSM TIP模型,我们考虑到了近震中地区的小规模IGW,计算了电离层参数。结果表明,通过计算预测的TEC(总电子含量)扰动与2006年1月8日希腊中纬度强烈地震之前GPS(全球定位系统)卫星的观测结果令人满意。

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