Ionospheric response to the passage of typhoons observed by subionospheric VLF radio signals

S. Shalimov, M. Solovieva
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引用次数: 1

Abstract

The response of the lower ionosphere to the passage of several dozen typhoons has been studied using a regional network of VLF stations in the Russian Far East. The experimental data presented in all cases clearly demonstrates wavelike disturbances of the subionospheric VLF signal amplitude and phase during the active stage of typhoons crossing radio paths. With the exception of magnetoactive and seismoactive days, this means that the disturbances generated by a typhoon, when propagating into the upper ionosphere, pass through the lower ionosphere, causing corresponding disturbances in the amplitude and phase of the VLF signal. Spectral analysis shows that the range of the wave disturbances detected corresponds to the periods of atmospheric internal gravity waves (IGW). A mechanism of the action of IGWs on the lower ionosphere is proposed which allows us to interpret the VLF signal phase variations observed. According to this mechanism, the action of IGW on the lower ionosphere is caused by polarization fields arising during the wave motion of plasma in the lower part of the F layer. These fields projected along geomagnetic field lines into the lower ionosphere cause the upper wall of the Earth—ionosphere waveguide to rise or fall.
亚层VLF无线电信号观测到的台风通过电离层的响应
利用俄罗斯远东地区的VLF台站区域网络,研究了电离层下层对几十个台风通过的响应。在所有情况下的实验数据都清楚地表明,在台风穿越无线电路径的活跃阶段,亚平流层VLF信号的振幅和相位具有波浪式扰动。除了磁活跃日和地震活跃日外,这意味着台风产生的扰动在传播到电离层上层时,会穿过电离层下层,从而在VLF信号的振幅和相位上引起相应的扰动。光谱分析表明,探测到的波扰动范围与大气内部重力波的周期相对应。本文提出了igw对下电离层的作用机制,使我们能够解释观测到的VLF信号相位变化。根据这一机制,IGW对电离层下层的作用是由F层下层等离子体波动过程中产生的极化场引起的。这些场沿地磁场线投射到较低的电离层,导致地球-电离层波导的上壁上升或下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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