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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Simulation of low-latitude ionospheric response to 2015 St. Patrick’s Day super geomagnetic storm using ionosonde-derived PRE vertical drifts over Indian region
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Simulation of low-latitude ionospheric response to 2015 St. Patrick’s Day super geomagnetic storm using ionosonde-derived PRE vertical drifts over Indian region

机译:低纬度电离层响应的模拟2015年圣帕特里克节超级地磁风暴使用ionosonde-derived PRE垂直飘印度地区

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In this paper, we present low-latitude ionospheric response over Indian longitude to the recent super geomagnetic storm of 17 March 2015, using the Sami2 is Another Model of the Ionosphere (SAMI2) model which incorporates ionosonde-derived vertical drift impacted by prompt penetration eastward electric field occurring during the evening prereversal enhancement (PRE) in the vertical drift. The importance of this storm is that (1) Dst reaches as low as ~228 nT and (2) prompt penetration of eastward electric field coincided with evening hours PRE. The daytime vertical E × B drifts in the SAMI2 model are, however, considered based on Scherliess-Fejer model. The simulations indicate a significant enhancement in F layer height and equatorial ionization anomaly (EIA) in the post sunset hours on 17 March 2015 vis-a-vis quiet day. The model simulations during recovery phase, considering disturbance dynamo vertical E × B drift along with equatorward disturbance wind, indicate suppression of the daytime EIA. SAMI2 simulations considering the disturbance wind during the recovery phase suggest that equatorward wind enhances the ionospheric density in the low latitude; however, its role in the formation of the EIA depends on the polarity of the zonal electric field. Comparison of model derived total electron content (TEC) with the TEC from ground GPS receivers indicates that model does reproduce enhancement of the EIA during themain phase and suppression of the EIA during the recovery phase of the superstorm. However, peculiarities pertaining to the ionospheric response to prompt penetration electric field in the Indian sector vis-a-vis earlier reports from American sector have been discussed.
机译:在本文中,我们目前的低纬度电离层最近在印度经度的回应超级地磁风暴2015年3月17日,使用电离层的Sami2是另一个模型(SAMI2)模型,该模型包含了ionosonde-derived垂直漂移的影响迅速渗透向东电场发生在晚上prereversal增强(前)在垂直漂移。这场风暴是(1)Dst的重要性~ 228元,而(2)提示的渗透向东电场恰逢傍晚小时前。然而,SAMI2模型基础上Scherliess-Fejer模型。F层高度和显著增强赤道电离异常(EIA)的职位日落时间2015年3月17日与安静的一天。考虑扰动发电机垂直E×B漂移随着风朝赤道方向扰动,表明抑制白天环评。模拟考虑扰动风在经济复苏阶段建议朝赤道方向风力增强了电离层密度在纬度较低;EIA的形成取决于的极性纬向电场。派生的总电子含量(TEC)侦探从地面GPS接收器表明模型繁殖期间加强环评吗主要阶段和环评的抑制超级风暴的复苏阶段。电离层特性有关应对迅速渗透电场印度板块与先前的报告美国部门已经进行了讨论。

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