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Subionospheric LF monitoring of ionospheric perturbations prior to the Tokachi-oki earthquake and a possible mechanism of lithosphere-ionosphere coupling

机译:十胜地震前电离层扰动的亚电层LF监测及岩石圈 - 电离层耦合的可能机制

摘要

We first present the results of simultaneous monitoring of subionospheric LF propagation over two different paths prior to a very strong Tokachi-oki earthquake (near the east coast of Hokkaido Island on September 25, 2003) with magnitude 8.3. Nighttime amplitude fluctuations of the Japanese Time Standard Transmitter (JJY, 40 kHz) signal received at Moshiri (Japan, geographic coordinates 44°N, 142°E) and at Petropavlovsk-Kamchatski, Russia (53°N, 158°E) were analyzed. As a possible precursory signature we observed synchronous intensification of quasi-periodic 16-day variations of the dispersion in the signals received at both observation stations before the earthquake. The strongest deviations observed as a rule were depletions of signal amplitude probably connected with an increase in loss in the ionosphere by the enhancement of turbulence. This is due to dissipation of internal gravity waves (IGW) at the lower ionospheric heights. A scenario of interconnection between seismo-activity, atmospheric gravity waves and planetary waves, is proposed to explain the observed association with strong earthquakes.
机译:我们首先介绍了同时发生的强烈8.3级托卡奇—冈井地震(北海道岛东海岸附近,2003年9月25日)之前在两个不同路径上亚电离层低频传播同时监测的结果。分析了在Moshiri(日本,地理坐标44°N,142°E)和俄罗斯Petropavlovsk-Kamchatski(53°N,158°E)接收到的日本时间标准发射器(JJY,40 kHz)信号的夜间幅度波动。作为可能的前兆特征,我们观察到地震前两个观测站接收到的信号的色散的准周期16天变化同步增强。通常观察到的最强偏差是信号振幅的损耗,可能与湍流增强导致电离层损耗增加有关。这是由于电离层高度较低时内部重力波(IGW)的耗散所致。提出了一种地震活动,大气重力波和行星波之间相互联系的方案,以解释观测到的与强地震的联系。

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