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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Max-Planck-Institut für Extraterrestrische Physik, Garching, Germany
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Max-Planck-Institut für Extraterrestrische Physik, Garching, Germany

机译:马克斯·普朗克地球物理研究所,德国加兴

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A global ionospheric electrostatic potential model, which we refer to as Nopper-Carovillano (N-C), can be linked with a magnetospheric potential model. The latter model, which we refer to as Hill-Siscoe-Ober (H-S-O), computes a transpolar potential Φ PC (H-S-O) based on solar wind parameters and region-1 field-aligned currents (FAC) from the magnetosheath to the ionosphere. The polar ionospheric conductance required by H-S-O is defined by the N-C model. In this way, the transpolar potential and the associated FAC are the same in both models. A distribution of region-1 FAC in the N-C model predicts a two-cell convection pattern which is in reasonable agreement with plasma drifts measured by DMSP (Defense Meteorological Satellite Program) satellites. The H-S-O model, as modified by N-C, is compared with the Weimer potential model and with the transpolar potentials observed by DMSP satellites during the 6–7 April 2000 magnetic storm. Good agreement is found in both cases. The region-2 (J2) current is estimated from the Siscoe (S-RC) ring-current circuit model which is driven by Φ PC (H-S-O). The resistor values in S-RC, as determined by N-C, when combined with the global potential solution, make it possible to estimate the time profile of the equatorial penetration electric field during the storm's main phase. With the values obtained, shielding occurs within 1 hour of onset. Equatorial plasma bubbles (EPBs) are seen some hours after the initial increase of Φ PC and are qualitatively consistent with the equatorial penetration electric field calculated by the combined model.
机译:可以将全球电离层静电势模型(我们称为Nopper-Carovillano(N-C))与磁层电势模型联系起来。后一种模型(我们称为Hill-Siscoe-Ober(H-S-O))基于太阳风参数和从磁石场到电离层的1区场对准电流(FAC)计算出跨极电势ΦPC(H-S-O)。 H-S-O所需的极性电离层电导由N-C模型定义。这样,两个模型中的跨极电势和相关的FAC都是相同的。在N-C模型中,区域1 FAC的分布预测了两个单元的对流模式,该模式与DMSP(国防气象卫星计划)卫星测得的血浆漂移在合理范围内一致。将经过N-C修改的H-S-O模型与Weimer势模型以及DMSP卫星在2000年4月6日至7日磁暴期间观测到的跨极势进行了比较。在这两种情况下都发现了良好的一致性。区域2(J2)电流是根据ΦPC(H-S-O)驱动的Siscoe(S-RC)环形电流电路模型估算的。由N-C确定的S-RC中的电阻值与全局电势解决方案结合使用时,可以估计风暴主相期间赤道穿透电场的时间曲线。根据获得的值,在发病后1小时内会发生屏蔽。在ΦPC初始增加几个小时后便出现了赤道等离子体气泡(EPB),其质量与组合模型计算出的赤道穿透电场一致。

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