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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Reconnection at the dayside magnetopause: Comparisons of global MHD simulation results with Cluster and Double Star observations
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Reconnection at the dayside magnetopause: Comparisons of global MHD simulation results with Cluster and Double Star observations

机译:在日常磁性迁移中重新连接:全球MHD仿真结果与集群和双星观测结果的比较

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摘要

This study uses two conjunctions between Cluster and Double Star TC-1 spacecraft together with global magnetohydrodynamic (MHD) simulations to investigate the large-scale configuration of magnetic reconnection at the dayside magnetopause. Both events involve southward interplanetary magnetic fields with significant B y components. The first event occurred on 8 May 2004, while both spacecraft were exploring the dawn flank of the magnetosphere; TC-1 was skimming the magnetopause whereas Cluster was exploring higher latitudes. Results from a global MHD simulation show the formation of an equatorial merging line in the morning sector and suggest that the three-dimensional geometry of the merging region is mostly a radial juxtaposition of planes displaying X-type reconnection geometries. The second conjunction was on 6 April 2004. During this event, Cluster was located at high latitudes and close to the noon-midnight meridian, while TC-1 was exploring the dawnside at low latitudes. Analysis of the simulation reveals that both antiparallel and component merging occurred simultaneously. Three-dimensional rendering of the parallel electric field indicates that component merging initiated in the subsolar magnetopause. Simulation runs carried out using different parameters in the model suggest that the spread of the merging region depends on the local resistivity. The subsolar-merging region grows with increasing resistivity values and becomes patchy when a resistivity threshold is used. However, the region of component merging appears to remain spatially constrained to the subsolar region where stronger parallel electric fields occur and no clear connection with the antiparallel-merging regions is found for the range of parameters surveyed.
机译:本研究使用集群和双星TC-1航天器之间的两个连词以及全局磁力流体动力学(MHD)模拟,以研究日常磁性迁移时磁重新连接的大规模配置。这两个事件都涉及具有重要B y组件的向南行星际磁场。第一次活动于2004年5月8日发生,而两艘航天器正在探索磁层的黎明侧翼; TC-1正在撇去磁性博弈,而群集则探索更高的纬度。全球MHD仿真结果显示了早晨扇区的赤道合并线的形成,并表明合并区域的三维几何形状主要是显示X型重新连接几何形状的平面的径向并置。第二个结合于2004年4月6日。在此活动期间,集群位于高纬度,靠近中午 - 午夜的经络,而TC-1则在低纬度地区探索黎明赛。仿真分析表明,同时发生反平行和组分合并。并行电场的三维渲染表示在子磁化中启动的组件合并。使用模型中的不同参数执行的模拟运行表明合并区域的扩展取决于局部电阻率。子释放区域随着电阻率值的增加而增长,并且当使用电阻率阈值时变形。然而,组件合并区域似乎在空间上被限制到子焊区域,其中发生了更强的平行电场并且没有与调查的参数的参数的范围内发现与反平行合并区域的明确连接。

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  • 作者单位

    Institute of Geophysics and Planetary Physics University of California Los Angeles Los Angeles California USA;

    Laboratoire de Physique et Chimie de l'Environnement CNRS Orleans France;

    Rutherford Appleton Laboratory Didcot UK;

    European Space Research and Technology Centre European Space Agency Noordwijk Netherlands;

    Centre d'Etude Spatiale des Rayonnements UMR 5187 CNRS Toulouse France;

    Centre d'Etude Spatiale des Rayonnements UMR 5187 CNRS Toulouse France;

    Centre d'Etude Spatiale des Rayonnements UMR 5187 CNRS Toulouse France;

    Blackett Laboratory Imperial College London UK;

    Blackett Laboratory Imperial College London UK;

    Blackett Laboratory Imperial College London UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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