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High-latitude ground-based observations of the thermospheric ion-drag time constant

机译:热球离子拖曳时间常数的高纬度地面观测

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摘要

From previous studies, it has been conclusively demonstrated that F-region thermospheric winds follow, but generally lag behind, the ion drift pattern of magnetospheric convection. Analysis of the ion-neutral momentum exchange equation shows that ion-drag and thermal pressure are the major contributors to neutral momentum forcing at F-region heights with relatively minor effects from coriolis, advection and viscous forces. An ion-neutral coupling time constant (e-folding time) has been defined which describes the time taken for the neutral gas velocity to approach the ion velocity after a step change in convection. In this study, F-region ion drift and neutral winds have been observed by the EISCAT tristatic incoherent scatter facility and a ground-based Fabry-Perot interferometer, respectively, from northern Scandinavia. The e-folding time varies in the range 0.5 - 6.5 hours, with an average of 1.8 and 3.3 hours for a geomagnetically active and quiet period, respectively, which compares well with previous satellite measurements of 0.5 - 3.5 hours.
机译:从以前的研究中已经得出结论,F区域的热层风遵循但通常滞后于磁层对流的离子漂移模式。离子中性动量交换方程的分析表明,离子阻力和热压是F区高度中性动量强迫的主要贡献因素,而科里奥利,对流和粘性力的影响相对较小。定义了离子中性耦合时间常数(电子折叠时间),该常数描述了对流阶跃变化后中性气体速度接近离子速度所花费的时间。在这项研究中,分别由斯堪的那维亚北部的EISCAT三基地非相干散射设施和地面法布里-珀罗干涉仪分别观测到F区离子漂移和中性风。电子折叠时间的变化范围为0.5-6.5小时,地磁活跃期和安静期的平均时间分别为1.8和3.3小时,这与之前的卫星测量值0.5-3.5小时相比相当不错。

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