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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >A new time-dependent ionosphere-magnetosphere coupling model: Comparison of field-aligned currents against ST5 observations
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A new time-dependent ionosphere-magnetosphere coupling model: Comparison of field-aligned currents against ST5 observations

机译:一种新的时变电离层-磁层耦合模型:与ST5观测值相比的场对准电流

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摘要

By using Tsyganenko's model for the magnetosphere's magnetic field, which links two hemispheres of the ionosphere, and adopting a practical boundary condition for the electric potential around the polar cap, we developed a new ionosphere-magnetosphere coupling model based on prairie view dynamo code (PVDC). The new model takes the variations in solar wind and interplanetary magnetic field, as well as the geomagnetic activity, into account. Rather than the previous version of PVDC that is useful only for quiet conditions, the new model enables to calculate the electric potential and currents in the ionosphere and the field-aligned current (FAC) off the ionosphere in quiet and disturbed times. Comparison of the calculated FAC with the measurements of Space Technology 5 (ST5) mission shows a good agreement.
机译:通过将Tsyganenko模型用于连接电离层两个半球的磁层磁场,并针对极化极帽周围的电势采用实际的边界条件,我们开发了基于草原视发电机代码(PVDC)的新电离层-磁层耦合模型)。新模型考虑了太阳风和行星际磁场以及地磁活动的变化。新模型能够计算电离层中的电势和电流,以及在安静和扰动时间内电离层外的场对准电流(FAC),而不是仅用于安静条件的PVDC先前版本。将计算出的FAC与空间技术5号(ST5)任务的测量结果进行比较表明了很好的一致性。

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