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The study of interplanetary shocks, geomagnetic storms, and substorms with the WINDMI model.

机译:使用WINDMI模型研究行星际冲击,地磁风暴​​和亚风暴。

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摘要

WINDMI is a low dimensional plasma physics-based model of the coupled magnetosphere-ionosphere system. The nonlinear system of ordinary differential equations describes the energy balance between the basic nightside components of the system using the solar wind driving voltage as input. Of the eight dynamical variables determined by the model, the region 1 field aligned current and ring current energy is compared to the westward auroral electrojet AL index and equatorial geomagnetic disturbance storm time Dst index. The WINDMI model is used to analyze the magnetosphere-ionosphere system during major geomagnetic storms and substorms which are community campaign events. Numerical experiments using the WINDMI model are also used to assess the question of how much interplanetary shock events contribute to the geoeffectiveness of solar wind drivers. For two major geomagnetic storm intervals, it is found that the magnetic field compressional jump is important to producing the changes in the AL index. Further, the WINDMI model is implemented to compute model AL and Dst predictions every ten minutes using real-time solar wind data from the ACE satellite as input. Real-Time WINDMI has been capturing substorm and storm activity, as characterized by the AL and Dst indices, reliably since February 2006 and is validated by comparison with ground-based measurements of the indices. Model results are compared for three different candidate input solar wind driving voltage formulas. Modeling of the Dst index is further developed to include the additional physical processes of tail current increases and sudden commencement. A new model, based on WINDMI, is developed using the dayside magnetopause and magnetosphere current systems to model the magnetopause boundary motion and the dayside region 1 field aligned current which is comparable to the auroral upper AU index.
机译:WINDMI是耦合磁层-电离层系统的基于低维等离子体物理学的模型。常微分方程的非线性系统描述了使用太阳风驱动电压作为输入的系统基本夜间组件之间的能量平衡。由模型确定的八个动力学变量中,将区域1场对齐的电流和环流能量与西向极光电喷AL指数和赤道地磁扰动风暴时间Dst指数进行比较。 WINDMI模型用于分析作为社区运动事件的主要地磁风暴和亚暴期间的磁层-电离层系统。使用WINDMI模型进行的数值实验还用于评估行星际冲击事件对太阳能风力驱动器的地球效率有多大贡献的问题。对于两个主要的地磁风暴间隔,发现磁场压缩跃变对于产生AL指数的变化很重要。此外,WINDMI模型被实现为使用来自ACE卫星的实时太阳风数据作为输入,每十分钟计算一次模型AL和Dst预测。自2006年2月以来,实时WINDMI一直可靠地捕获以AL和Dst指数为特征的亚风暴和风暴活动,并通过与基于地面的指数比较进行了验证。比较了三种不同的候选输入太阳风驱动电压公式的模型结果。 Dst指数的模型被进一步开发,以包括尾电流增加和突然开始的附加物理过程。基于WINDMI的新模型是使用日间磁层顶和磁层电流系统开发的,以模拟磁层顶边界运动和与极光上AU指数相当的日间区域1场对准电流。

著录项

  • 作者

    Mays, Mona Leila.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Physics Astrophysics.;Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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