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The Bastille day Shocks and Merged Interaction Region

机译:巴士底狱日冲击与合并的互动区域

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摘要

Near 1 AU the solar wind structure associated with the solar flare of 14 July 2000 (Bastille Day) consisted of a large high-speed stream of 15 July and five nearby small streams during a 10-day period. At the leading edge of the large high-speed stream, in less than 6 hours, the flow speed increased from 600 km s−1 to 1100 km s−1, the magnetic field intensity increased from 10 nT to 60 nT, and an interaction region was identified. The interaction region was bounded between the pair of a forward shock F and a reverse shock R. Additional forward shocks were also identified at the leading edge of each of the five smaller streams. This paper presents a magnetohydrodynamics (MHD) simulation using ACE plasma and magnetic field data near 1 AU as input to study the radial evolution of the Bastille Day solar wind event. The two shocks, F and R, propagated in opposite directions away from each other in the solar wind frame and interacted with neighboring shocks and streams; the spatial and temporal extent of the interaction region continued to increase with the heliocentric distance. The solar wind was restructured from a series of streams at 1 AU to a huge merged interaction region (MIR) extending over a period of 12 days at 5.5 AU. Throughout the interior of the MIR bounded by the shock pair F and R the magnetic field intensity was a few times stronger than that outside the MIR. The simulation shows how merging of shocks, collision of shocks, and formation of new shocks contributed to the evolution process.
机译:2000年7月14日(巴士底日)与太阳耀斑相关的太阳风结构接近1 AU,由7月15日的大型高速流和10天期间的附近5条小流组成。在大型高速流的前沿,不到6小时,流速从600 km s-1 增加到1100 km s-1 ,磁场强度从10增加。 nT至60 nT,并确定了一个相互作用区域。相互作用区域限制在一对正向冲击力F和反向冲击力R之间。在五个较小的流中的每一个的前缘处还发现了附加的正向冲击力。本文介绍了使用ACE等离子体和1 AU附近的磁场数据作为输入的磁流体动力学(MHD)模拟,以研究巴士底日太阳风事件的径向演变。两种冲击F和R在太阳风框架中沿彼此相反的方向传播,并与相邻的冲击和气流相互作用。相互作用区域的时空范围随着日心距的增加而持续增加。太阳风从1 AU处的一系列流重组为一个巨大的合并相互作用区域(MIR),该区域在5.5 AU处持续了12天。在整个以冲击对F和R为边界的MIR内部,磁场强度要比MIR外部强几倍。仿真显示了冲击的合并,冲击的碰撞以及新冲击的形成对演化过程的贡献。

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  • 来源
    《Solar Physics 》 |2001年第2期| 253-263| 共11页
  • 作者单位

    Catholic University of America;

    NASA Goddard Space Flight Center;

    Bartol Research Institute University of Delaware;

    Bartol Research Institute University of Delaware;

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  • 正文语种 eng
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