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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Global MHD simulation of flux transfer events at the high-latitude magnetopause observed by the Cluster spacecraft and the SuperDARN radar system
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Global MHD simulation of flux transfer events at the high-latitude magnetopause observed by the Cluster spacecraft and the SuperDARN radar system

机译:在全球的磁流体动力模拟通量传输事件高纬度地区的磁层观察到的集群航天器和SuperDARN雷达系统

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摘要

A global magnetohydrodynamic numerical simulation is used to study the large-scale structure and formation location of flux transfer events (FTEs) in synergy with in situ spacecraft and ground-based observations. During the main period of interest on the 14 February 2001 from 0930 to 1100 UT the Cluster spacecraft were approaching the Northern Hemisphere high-latitude magnetopause in the postnoon sector on an outbound trajectory. Throughout this period the magnetic field, electron, and ion sensors on board Cluster observed characteristic signatures of FTEs. A few minutes delayed to these observations the Super Dual Auroral Radar Network (SuperDARN) system indicated flow disturbances in the conjugate ionospheres. These “two-point” observations on the ground and in space were closely correlated and were caused by ongoing unsteady reconnection in the vicinity of the spacecraft. The three-dimensional structures and dynamics of the observed FTEs and the associated reconnection sites are studied by using the Block-Adaptive-Tree-Solarwind-Roe-Upwind-Scheme (BATS-R-US) MHD code in combination with a simple open flux tube motion model (Cooling). Using these two models the spatial and temporal evolution of the FTEs is estimated. The models fill the gaps left by measurements and allow a “point-to-point” mapping between the instruments in order to investigate the global structure of the phenomenon. The modeled results presented are in good correlation with previous theoretical and observational studies addressing individual features of FTEs.
机译:一个全球性的磁流体动力数值模拟是用于研究大型结构和形成的位置通量传输事件(招聘)与原位航天器和协同作用地面观测。感兴趣的从0930年到2001年2月14日1100 UT集群航天器被接近北半球高纬度地区在一个磁postnoon部门出站轨迹。磁场、电子和离子传感器董事会集群特征签名有限责任。超级双极光雷达观测网络(SuperDARN)系统表示流扰动共轭电离层。地面观测和空间密切相关,是由持续造成的不稳定的重新连接附近的宇宙飞船。动态观察到的有限责任和相关的重新连接使用研究的网站Block-Adaptive-Tree-Solarwind-Roe-Upwind-Scheme(BATS-R-US)磁流体动力结合一个简单的代码打开通量管运动模型(冷却)。这两个模型的空间和时间估计,招聘的进化。测量和允许留下填补空缺“点对点”之间的映射工具为了调查的全球结构这一现象。与先前的理论和相关性良好观察性研究解决个人功能有限。

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