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首页> 外文期刊>Annales Geophysicae >3-D mesoscale MHD simulations of magnetospheric cusp-like configurations: cusp diamagnetic cavities and boundary structure
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3-D mesoscale MHD simulations of magnetospheric cusp-like configurations: cusp diamagnetic cavities and boundary structure

机译:磁层尖状结构的3-D中尺度MHD模拟:尖状抗磁腔和边界结构

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摘要

We present results from mesoscale simulations of the magnetospheric cusp region for both strongly northward and strongly southward interplanetary magnetic field (IMF). Simulation results indicate an extended region of depressed magnetic field and strongly enhanced plasma β which exhibits a strong dependence on IMF orientation. These structures correspond to the Cusp Diamagnetic Cavities (CDC's). The typical features of these CDC's are generally well reproduced by the simulation. The inner boundaries between the CDC and the magnetosphere are gradual transitions which form a clear funnel shape, regardless of IMF orientation. The outer CDC/magnetosheath boundary exhibits a clear indentation in both the x-z and y-z planes for southward IMF, while it is only indented in the x-z plane for northward, with a convex geometry in the y-z plane. The outer boundary represents an Alfvenic transition, mostly consistent with a slow-shock, indicating that reconnection plays an important role in structuring the high-altitude cusp region.
机译:我们从强北和强南际行星际磁场(IMF)的磁层尖端区域的中尺度模拟中得出结果。仿真结果表明,压制磁场的扩展区域和强烈增强的血浆β表现出对IMF方向的强烈依赖性。这些结构对应于尖锐的反磁性腔(CDC)。这些CDC的典型特征通常可以通过仿真得到很好的再现。 CDC和磁层之间的内部边界是逐渐过渡,形成清晰的漏斗形状,而与IMF的方向无关。 CDC /磁石的外部边界在向南IMF的x-z和y-z平面中均显示清晰的凹痕,而向北仅在x-z平面中向北凹入,在y-z平面中具有凸形几何形状。外边界代表Alfvenic过渡,主要与缓慢震动一致,表明重新连接在构造高空尖端区域方面起着重要作用。

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