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Researching of quasiperiodic variations in the amplitude of VLF electromagnetic signals from lightning discharges passing over strong earthquakes

机译:雷电穿越强地震时VLF电磁信号幅度的准周期性变化研究

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The specific features of a method for radiosounding the lower ionosphere over earthquake epicenters using LF electromagnetic signals of thunderstorm sources (atmospherics) have been considered. The effects of shallow-focus earthquakes with magnitudes larger than 4.0 and their precursors manifest themselves in amplitude characteristics of atmospherics. It has been assumed that variations in the signal characteristics are related to disturbances in the lower ionosphere. According to the results of azimuthal scanning, cross sectional dimensions of disturbed regions, as a rule, correspond to the dimensions of the first two Fresnel zones for signals at a frequency of 10 kHz. Azimuthal scanning also indicated that the positions of disturbed regions during and before earthquakes could have a certain dynamics and differ from the projection onto the earthquake epicenter. Quasi-periodic variations of signal amplitude of lightning discharges passing over earthquake epicenters are in details considered. It has been obtained that the period of amplitude modulation makes up 2-3 hours, i.e. in the ionosphere D-layer the same values of the periods of wave phenomena are registered as which are observed in a higher F-region of the ionosphere. The results obtained during the work specify that, at least, in the part of events the seismic disturbances in the ionosphere can be caused by AGW, propagating upwards from the epicentral area.
机译:已经考虑了使用雷暴源(大气)的低频电磁信号对震中下层电离层进行无线电探测的方法的特定功能。震级大于4.0的浅焦点地震的影响及其先兆表现为大气的振幅特征。假设信号特性的变化与下部电离层的干扰有关。根据方位扫描的结果,受干扰区域的横截面尺寸通常对应于频率为10 kHz的信号的前两个菲涅耳区域的尺寸。方位角扫描还表明,地震期间和地震之前扰动区域的位置可能具有一定的动态,并且与地震震中的投影有所不同。详细考虑了穿越地震震中的雷电信号幅度的准周期变化。已经获得振幅调制的时间为2-3小时,即,在电离层D层中,记录了与在电离层的较高F区域中观察到的相同的波动现象的周期值。工作期间获得的结果表明,至少在部分事件中,电离层的地震扰动可能是由AGW引起的,从震中区向上传播。

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