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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evidence of low-latitude daytime large-scale traveling ionospheric disturbances observed by high-frequency multistatic backscatter sounding system during a geomagnetically quiet period
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Evidence of low-latitude daytime large-scale traveling ionospheric disturbances observed by high-frequency multistatic backscatter sounding system during a geomagnetically quiet period

机译:高频多静态反向散射测深系统在地磁静默期间观测到的低纬度白天大规模行进电离层扰动的证据

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摘要

Observations from the high-frequency multistatic backscatter sounding radars on a geomagnetically quiet day (minimum D _(st) = -14 nT)captured the anti-equatorward propagation of daytime large-scale traveling ionospheric disturbance(LSTID)at the low-latitude regions. The observed LSTID was characterized approximately by a meridional propagation speed of 347 ± 78 m/s and azimuthal angle of -4.7 ± 27.6°(counterclockwise from north), with a period of 76 min and a wavelength of 1583 ± 354 km by means of maximum entropy cross-spectral analysis. Vertical phase velocity was also evaluated to be <~42 m/s through the Doppler measurements. These results provide evidence that the low-latitude ionosphere can undergo large-scale perturbations even under geomagnetically quiet conditions. We suggest that this observed LSTID could be due to the secondary gravity waves from thermospheric body forces created from the dissipation of primary gravity waves from deep tropospheric convection.
机译:在地磁安静的一天(最小D _(st)= -14 nT)上通过高频多点反向散射测深雷达观测到的数据,捕获了低纬度地区白天大范围电离层扰动(LSTID)的反赤道传播。 。观测到的LSTID的特征是子午传播速度为347±78 m / s,方位角为-4.7±27.6°(从北向逆时针方向),周期为76分钟,波长为1583±354 km。最大熵互谱分析。通过多普勒测量,垂直相速度也被评估为<〜42 m / s。这些结果提供了证据,即使在地磁安静的条件下,低纬度电离层也可能遭受大规模扰动。我们认为,这种观测到的LSTID可能是由于热对流层体力产生的次级重力波所产生的,而热力对流层体力是由对流层深对流的初级重力波的耗散产生的。

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