首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the Role of E-F Region Coupling in the Generation of Nighttime MSTIDs During Summer and Equinox: Case Studies Over Northern Germany
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On the Role of E-F Region Coupling in the Generation of Nighttime MSTIDs During Summer and Equinox: Case Studies Over Northern Germany

机译:E-F区域耦合的作用代的夜间MSTIDs在夏季在德国北部Equinox:案例研究

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摘要

Simultaneous observations from a 630 nm all-sky airglow imager, GNSS-TEC receivers, and an ionosonde are used to investigate the role of E- and F-region coupling on the generation of medium-scale traveling ionospheric disturbances (MSTIDs). The primary observations are OI 630 nm airglow images taken by an all-sky imager in Kühlungsborn (54.07°N; 11.46°E, 53.79°N Mlat.), a site in northern Germany. Out of 226 nights of observations, MSTIDs were found only in 18 nights, demonstrating the low occurrence rate over Kühlungsborn. We focused on four MSTIDs events: two during the vernal equinox and two during summer. Coincident measurements of detrended GNSS-TEC supported the presence of MSTIDs during the selected events, and simultaneous observations from the ionosonde in Juliusruh (54.60°N, 13.4°E, 54.02°N Mlat.) showed sporadic-E (Es) layer and spread-F activity in the E- and F-region, respectively. We observed the onset of the observed MSTIDs to be around the 15°–20°E longitude and 60–45°N latitude belts. Additionally, we found that in each case, the onset of MSTIDs coincides with the presence of an Es layer with sporadic-E trace is observed (foEs) exceeding 4 MHz. This suggests that an Es layer with foEs ≥ 4MHz was a source of the generation of these MSTIDs. Altitude of the Es layer could be another important factor in generating MSTIDs. The Es layer should exist at an altitude where Hall conductivity is large, as happened in the present study.
机译:同时从630 nm全天观测大气光成像、GNSS-TEC接收器和一个ionosonde用于研究E -的作用代和F-region耦合中等规模的旅行电离层扰动(MSTIDs)。大气光由全天成像仪拍摄的图像网站在德国北部。观察,发现MSTIDs只有18岁晚上,展示了出现率低Kuhlungsborn。在春分和两个事件:两个在夏天。去趋势GNSS-TEC支持的存在MSTIDs在选定的事件,和同时观察ionosonde的Juliusruh(54.60°N, 13.4°E, 54.02°N Mlat。)分散e (Es)层和spread-F活动E - F-region,分别。观察到的发病MSTIDs周围15°-20°E经度和60-45°N纬度带。此外,我们发现,在每种情况下,出现MSTIDs恰逢一个的存在Es层与分散e跟踪观察(敌人)超过4 MHz。与敌人≥4 mhz的一代这些MSTIDs。在生成MSTIDs另一个重要因素。Es层应该存在一个高度霍尔电导很大,发生了本研究。

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