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Solar-eclipse-induced perturbations at mid-latitude during the 21?August?2017 event

机译:2017年8月21日事件期间中纬度日食引起的扰动

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A study of the response of some ionospheric parameters and their relationship in describing the behaviour of ionospheric mechanisms during the solar eclipse of 21?August?2017 is presented. Mid-latitude stations located along the eclipse path and with data available from the Global Ionospheric radio Observatory (GIRO) database were selected. The percentage of obscuration at these stations ranges between 63?% and 100?%. A decrease in electron density during the eclipse is attributed to a reduction in solar radiation and natural gas heating. The maximum magnitude of the eclipse consistently coincided with a hmF2 increase and with a lagged maximum decrease in NmF2 at the stations investigated. The results revealed that the horizontal neutral wind flow is as a consequence of the changes in the thermospheric and diffusion processes. The unusual increase and decrease in the shape and thickness parameters during the eclipse period relative to the control days points to the perturbation caused by the solar eclipse. The relationships of the bottomside ionosphere and the F2 layer parameters with respect to the scale height are shown in the present work as viable parameters for probing the topside ionosphere during the eclipse. Furthermore, this study shows that in addition to traditional ways of analysing the thermospheric composition and neutral wind flow, proper relation of standardized NmF2 and hmF2 can be conveniently used to describe the mechanisms.
机译:本文介绍了一些电离层参数的响应及其在描述2017年8月21日日食期间电离层机制行为方面的关系。选择了沿蚀路径的中纬度台站,并从全球电离层无线电天文台(GIRO)数据库获得了数据。这些站点的遮挡百分比在63%至100%之间。日食期间电子密度的下降归因于太阳辐射和天然气加热的减少。在研究站,日食的最大幅度与hmF2的增加和NmF2的最大滞后的时间一致。结果表明,水平中性风流动是热圈和扩散过程变化的结果。相对于控制日,日食期间形状和厚度参数的异常增加和减少表明日食引起的扰动。底面电离层和F2层参数相对于标尺高度的关系在本工作中显示为日食期间探测顶面电离层的可行参数。此外,这项研究表明,除了传统的分析热层成分和中性风流的方法外,标准化NmF2和hmF2的适当关系可以方便地用于描述机理。

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