首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Simulation of equatorial electrojet magnetic effects with the thermosphere-ionosphere-electrodynamics general circulation model
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Simulation of equatorial electrojet magnetic effects with the thermosphere-ionosphere-electrodynamics general circulation model

机译:模拟赤道电喷流磁影响的thermosphere-ionosphere-electrodynamics一般循环模型

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In this work, the magnetic variations simulated by the NCAR thermosphere-ionosphere-electrodynamics general circulation model (TIE-GCM) in the vicinity of the magnetic equator are examined to evaluate the ability of this model to reproduce the major features of the equatorial electrojet (EEJ) as observed on the ground as well as on board low-altitude orbiting satellites. The TIE-GCM simulates electric currents of various origins and reproduces their associated magnetic perturbations. We analyze the diurnal and latitudinal variations of the EEJ magnetic effects calculated on the ground in West Africa under approximately the same solar activity condition as in 1993 for the March equinox and June and December solstices. The latitudinal and local time structures of these simulated results correspond well to those that are observed. We also compare longitudinal variations of the midday EEJ magnetic perturbations observed by the CHAMP satellite with the model predictions. Although the simulations and observations both show multiple maxima and minima in longitude, the locations of these extrema often disagree. In the model most of the longitudinal variation of the magnetic variations is associated with nondipolar structure of the geomagnetic field. We find that the modeled contributions of the thermospheric migrating diurnal and semidiurnal tides to the magnetic perturbations have large longitudinal variations, and we suggest that an increase in the amplitude of these tides in the TIE-GCM may cause them to play a major role in explaining the morphology of the EEJ longitudinal variation.
机译:在这部作品中,磁性变化模拟NCAR的thermosphere-ionosphere-electrodynamics大气环流模式(TIE-GCM)磁赤道附近了评估这个模型复制的能力赤道电喷流的主要特性(EEJ)观察到在地上一样董事会低空轨道卫星。TIE-GCM模拟不同的电流起源和繁殖它们相关的磁性扰动。EEJ磁纬度的变化影响计算地面在西非在大约相同的太阳活动在1993年三月春分和条件6月和12月二至点。当地时间结构的模拟结果对应那些观察到。也比较的纵向变化中午EEJ磁扰动观察的CHAMP卫星与模型预测。虽然模拟和观测显示经度,多个最大值和最小值这些极值的位置经常不同意。大部分的纵向变化的模型磁场变化与nondipolar相关联地磁场的结构。建模thermospheric的贡献迁徙的昼夜和半日潮磁扰动有大量纵向的变化,我们建议增加这些潮汐的振幅TIE-GCM使他们在解释中发挥重要作用EEJ纵向的形态学变化。

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