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Simulations of the equatorial thermosphere anomaly: Field-aligned ion drag effect

机译:赤道热电离层的模拟异常:Field-aligned离子拖动的效果

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In this paper the impact of the field-aligned ion drag on equatorial thermosphere temperature and density is quantitatively investigated on the basis of the National Center for Atmospheric Research Thermosphere Ionosphere Electrodynamics General Circulation Model (NCAR TIEGCM) simulations under high solar activity (F107 = 180). The increase of upward vertical winds over the magnetic equator associated with the additional divergence of meridional winds, caused by the inclusion of field-aligned ion drag, leads to a reduction in thermosphere temperature and density at the magnetic equator through enhanced adiabatic cooling. We found that the field-aligned ion drag has an obvious impact on the thermosphere only over the magnetic equatorial region in the daytime and evening sectors, whereas it has less effect on the equatorial thermosphere anomaly (ETA) crests. The daytime neutral temperature over the magnetic equator is reduced by about 30 K, for altitudes above 250 km without significant altitudinal variations, when field-aligned ion drag is included in the simulation. The thermosphere density in the magnetic equatorial region starts to change slightly at 300 km and depletes by about 5% at 400 km, while experiencing a greater decrease with altitude. Furthermore, the trough produced in the neutral temperature and density corresponds well with the magnetic dip equator. The ETA features during 12:00-18:00 LT become obvious as a result of the inclusion of the field-aligned ion drag. Specifically, our results show that at 400 km the crest-trough differences in neutral temperature are about 30-60 K, and the crest-trough ratios in thermosphere density are 1.03-1.06, comparable with observations.
机译:摘要field-aligned离子的影响拖累赤道热大气层温度和密度是定量调查国家大气中心的基础研究热大气层电离层电动力学环流模型(NCAR TIEGCM)模拟在高太阳活动(F107 =180)。相关的磁赤道额外的经向风的散度,引起的的包容field-aligned离子拖动,线索在热大气层温度和减少通过增强密度在磁赤道绝热冷却。field-aligned离子拖有明显的影响磁热大气层只赤道地区在日间和晚上的行业,而它的影响较少赤道热电离层异常(ETA)波峰。白天在磁中性温度赤道是减少了约30 K,海拔250公里以上没有明显的高度的变化,当field-aligned离子拖动包括在模拟。密度在磁赤道地区开始在300公里和消耗略有变化在400公里的约5%,而经历更大降低高度。产生的中性温度和密度对应的磁磁赤道。埃塔的特性在12:00-18:00 LT明显的夹杂物的结果field-aligned离子拖动。表明在400公里crest-trough差异中性温度大约是30 - 60 K,crest-trough比率在热电离层密度1.03 - -1.06,比较观察。

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