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Variations of the lower ionosphere height deduced from measurements of tweek-atmospherics

机译:根据tweek大气的测量值得出的电离层下部高度的变化

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Statistical analysis of experimental records of tweek-atmospherics (tweeks) was produced. Tweeks are observed during nighttime and represent response of the Earth-ionosphere waveguide to excitation by lightning strokes. Tweeks are formed by series of pulses consecutively reflected from the waveguide boundaries under different incident angles depending on a source-observer distance and effective ionosphere height along a propagation path. The tweek signals demonstrate the propagation of a few Earth-ionosphere waveguide modes. We used a time-frequency representation of analyzed tweek waveforms to infer separate branches, corresponding to different waveguide modes. We determined then propagation path's parameters such as source range, ionosphere height, and azimuthal orientation of a propagation path. Obtained results show the increase of effective height of a reflecting layer in low ionosphere during the night from evening until 3 hour after local midnight. These data also demonstrate the number of branches equal 2…4 in case of effective ionosphere height > 90 km and source range more than 1 Mm. In conjunction with effective height's rise this fact tends to decreasing of average branch quantity in the tweeks observed about few hours after local midnight.
机译:统计了tweek-大气(tweeks)的实验记录的统计分析。在夜间观察到了T周,代表了电离层波导对雷击激发的响应。 Tweek是由一系列脉冲形成的,这些脉冲在源入射角距离和沿传播路径的有效电离层高度的作用下,在不同的入射角下从波导边界连续反射。 tweek信号演示了几种地球电离层波导模式的传播。我们使用分析后的tweek波形的时频表示来推断独立的分支,对应于不同的波导模式。然后,我们确定了传播路径的参数,例如源范围,电离层高度和传播路径的方位角方向。获得的结果表明,在低电离层中,从晚上到夜间直到当地午夜后3小时,反射层的有效高度都会增加。这些数据还表明,在有效电离层高度> 90 km并且源范围大于1 Mm的情况下,分支数等于2…4。结合有效身高的上升,这一事实趋向于在当地午夜后约几个小时观察到的t周内平均分支数量的减少。

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