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An investigation into the influence of tidal forcing on F region equatorial vertical ion drift using a global ionosphere-thermosphere model with coupled electrodynamics

机译:耦合电动力学的全球电离层-热层模型研究潮汐强迫对F区赤道垂直离子漂移的影响

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A recent development of the coupled thermosphere-ionosphere-plasmasphere model (CTIP) has been the inclusion of the electrodynamic coupling between the equatorial ionosphere and thermosphere. The vertical ion drifts which result are shown to be largely in agreement with empirical data, on the basis of measurements made at the Jicamarca radar and other equatorial sites [Scherliess and Fejer, 1999]. Of particular importance, the CTIP model clearly reproduces the "prereversal enhancement" in vertical ion drift, a key feature of the observational data. Inacurracies in the modeled daytime upward ion motion have been investigated with regard to changing the magnitude and phase of components of the lower thermospheric tidal forcing. The results show that daytime vertical ion motion is highly dependent upon both the magnitude and phase of the semidiurnal tidal component. In addition, the CTIP model shows the prereversal enhancement. to be unaffected by changes in tidal forcing, but only for conditions of high solar activity. During periods of low solar activity the form of the prereversal enhancement is clearly dependant upon the magnitude and phase of the semidiurnal tide. [References: 45]
机译:热球-电离层-等离子层耦合模型(CTIP)的最新发展已经包括了赤道电离层和热层之间的电动力耦合。根据在Jicamarca雷达和其他赤道站点进行的测量,结果表明垂直离子漂移与经验数据基本吻合[Scherliess and Fejer,1999]。特别重要的是,CTIP模型清楚地再现了垂直离子漂移的“逆转增强”,这是观测数据的关键特征。关于改变下部热层潮汐强迫的分量的大小和相位,已经研究了白天的向上离子运动中的误差。结果表明,白天的垂直离子运动高度依赖于半日潮成分的大小和相位。另外,CTIP模型显示了逆转前的增强。不受潮汐力变化的影响,但仅限于太阳活动高的条件。在太阳活动低的时期,逆转增强的形式显然取决于半日潮的大小和相位。 [参考:45]

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