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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ionosonde tracking of infrasound wavefronts in the thermosphere launched by seismic waves after the 2010 M8.8 Chile earthquake
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Ionosonde tracking of infrasound wavefronts in the thermosphere launched by seismic waves after the 2010 M8.8 Chile earthquake

机译:在2010年M8.8智利地震后由地震波发射的热层次声波阵面的离子探空仪跟踪。

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摘要

Ionospheric disturbances associated with the M8.8 Chile earthquake (35.91°S, 72.73°W) on 27 February 2010 were observed at Kazan, Russia (55.85°N, 48.81°E). Rapid-run ionograms at 1 min intervals exhibited multiple-cusp signatures (MCSs) for more than 30 min, which have been observed several times after large earthquakes. The ionospheric disturbances were caused by infrasound propagating upward in the atmosphere, which modified the electron density distribution through ion-neutral collisions. The anomaly of the vertical electron density distribution responsible for the MCSs was analyzed by converting the ionogram traces into real height profiles. The density profiles at 1 min intervals allowed the tracking of the vertical propagation of infrasound and provided information on parameters of acoustic waves, which was not possible from the previous measurements such as standard ionograms at 5–15 min intervals, HF Doppler soundings, and total electron content using satellite beacon signals. The speed of acoustic waves in the thermosphere was evaluated from the consecutive ionograms with MCSs, and it was found that the thermospheric temperature was slightly higher than that calculated using the Mass Spectrometer and Incoherent Scatter Radar empirical model (NRLMSISE-00).
机译:在俄罗斯喀山(55.85°N,48.81°E)观察到与2010年2月27日智利M8.8地震(35.91°S,72.73°W)相关的电离层扰动。以1分钟为间隔的快速运行电离图在超过30分钟内显示出多个尖峰特征(MCS),这在大地震之后已经观察到了好几次。电离层扰动是由次声在大气中向上传播引起的,通过离子中性碰撞改变了电子密度分布。通过将离子迹线转换为实际高度轮廓,分析了引起MCS的垂直电子密度分布的异常。以1分钟为间隔的密度分布可以跟踪次声的垂直传播,并提供有关声波参数的信息,这是以前的测量所无法实现的,例如以5-15分钟为间隔的标准电离图,HF多普勒测深和总和电子含量使用卫星信标信号。用MCSs从连续的电离图评估热层中声波的速度,发现热层温度略高于使用质谱仪和非相干散射雷达经验模型(NRLMSISE-00)计算的温度。

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