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首页> 外文期刊>Annales Geophysicae >The numerical simulation on ionospheric perturbations in electric field before large earthquakes
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The numerical simulation on ionospheric perturbations in electric field before large earthquakes

机译:大地震前电场中电离层扰动的数值模拟

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摘要

Many observational results have shown electromagnetic abnormality in the ionosphere before large earthquakes. The theoretical simulation can help us to understand the internal mechanism of these anomalous electromagnetic signals resulted from seismic regions. In this paper, the horizontal and vertical components of electric and magnetic field at the topside ionosphere are simulated by using the full wave method that is based on an improved transfer matrix method in the lossy anisotropic horizontally stratified ionosphere. Taken account into two earthquakes with electric field perturbations recorded by the DEMETER satellite, the numerical results reveal that the propagation and penetration of ULF (ultra-low-frequency) electromagnetic waves into the ionosphere is related to the spatial distribution of electron and ion densities at different time and locations, in which the ion density has less effect than electron density on the field intensity. Compared with different frequency signals, the minimum values of electric and magnetic field excited by earthquakes can be detected by satellite in current detection capability have also been calculated, and the lower frequency wave can be detected easier.
机译:许多观测结果表明,大地震之前电离层的电磁异常。理论模拟可以帮助我们理解地震区域产生的这些异常电磁信号的内部机理。本文利用全波法模拟了有损耗各向异性水平分层电离层中顶电离层的电场和磁场的水平和垂直分量,该方法基于改进的传递矩阵法。考虑到DEMETER卫星记录的两次具有电场扰动的地震,数值结果表明,ULF(超低频)电磁波在电离层中的传播和穿透与电子和离子密度的空间分布有关。在不同的时间和位置,其中离子密度对电场强度的影响小于电子密度。与不同频率的信号相比,在计算出电流检测能力的同时,还可以通过卫星检测出地震激发的电场和磁场的最小值,从而可以更容易地检测出低频波。

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