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Meteorological effects in the lower ionosphere as based on VLF/LF signal observations

机译:基于VLF / LF信号观测的电离层下部的气象效应

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摘要

Very low and low frequency (VLF/LF) data recorded in the Far Eastern stations Petropavlovsk-Kamchatsky (158.92 degrees E, 53.15 degrees N), Yuzhno-Sakhalinsk (142.75 degrees E, 46.95 degrees N) and Yuzhno-Kurilsk (145.861 degrees E, 44.03 degrees N) are investigated to study the meteorological effects in the lower ionosphere. The results demonstrate the sensitivity of the VLF/LF signals to the variations of atmospheric pressure, humidity, wind velocity and temperature, and the VLF/LF record at the station of Yuzhno-Kurilsk is found to be most sensitive to those variations of atmospheric parameters. The region under consideration is characterized by high winter cyclonic activity in mid-latitudes and strong summer and autumn typhoon activity in low latitudes. VLF/LF signal variations during eight tropical cyclones (TCs) with different intensity are considered. Negative nighttime anomalies in the signal amplitude that are most probably caused by TC activity are found for six events. Those anomalies are observed during 1-2 days when TCs move inside the sensitivity zones of the subionospheric paths. Perturbations of the VLF signal observed during two TCs can be caused by both the TC influence and seismic activity, but no correlation between TC intensity and magnitude of the signal anomalies is found. Spectral analysis of the typhoon-induced disturbed signals revealed the fluctuations with time periods in the range of 7-16 and 15-55 min that corresponds to the range of internal gravity waves periods.
机译:远东台站Petropavlovsk-Kamchatsky(东经158.92度,北纬53.15度),南萨哈林斯克(北经142.75度,北纬46.95度)和南日-库里尔斯克(东经145.861度)记录的极低频和低频(VLF / LF)数据,北纬44.03度)进行了研究,以研究下电离层的气象效应。结果表明,VLF / LF信号对大气压力,湿度,风速和温度变化的敏感性,并且发现Yuzhno-Kurilsk站的VLF / LF记录对大气参数的变化最敏感。所考虑的地区的特征是中纬度地区冬季旋风活动活跃,低纬度地区夏季和秋季台风活动活跃。考虑了八个热带气旋(TC)在不同强度下的VLF / LF信号变化。在六个事件中发现了很可能是由TC活动引起的夜间信号幅度负异常。当TC在亚电离层路径的敏感区内移动时,会在1-2天内观察到这些异常。 TC影响和地震活动都可能导致在两个TC中观测到的VLF信号扰动,但未发现TC强度与信号异常幅度之间的相关性。台风引起的扰动信号的频谱分析显示,随时间的波动范围为7-16分钟和15-55分钟,这与内部重力波周期的范围相对应。

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