首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the Use of Different Magnetic FieldModels for Simulating the Dynamics of the Outer Radiation Belt Electrons During the October 1990 Storm
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On the Use of Different Magnetic FieldModels for Simulating the Dynamics of the Outer Radiation Belt Electrons During the October 1990 Storm

机译:关于在1990年10月中模拟外辐射带电子动态的不同磁场映射

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During geomagnetic storms, the magnetic field in the outer belt is known to be significantly distorted by the solar wind, such that the outer belt dynamics can be greatly impacted by the magnetic field topology. In this context, we develop a reduced Fokker-Planck code that includes the effects related to realistic magnetic field models (by using the existing dedicated LANLGeoMag library) through the steps of preprocessing, postprocessing, and, for the first time, during the computation of the reduced Fokker-Planck diffusion equation itself.We perform the solutions of the reduced Fokker-Planck equation in the framework of the geomagnetic storm that occurred from 9 October to 15 October 1990. With the use of Combined Release and Radiation Effects Satellite observations, the magnetic field model is shown to strongly affect the way of conciliating theory with observations (processing steps). More specifically, we explain analytically and numerically why the use of a dipole field can lead to misleading interpretations on the local enhancements (attributed to local acceleration) displayed by the electron distribution function, resulting in inaccurate simulations results at large L-shells. The consideration of a realistic field does not produce any artificial peaks. With such corrected data sets, a great part of the dynamics can be described by radial transport and is thus better reproduced by the simulations. This crucial importance of the field geometry is further emphasized with the calculation of unidirectional, omnidirectional, and integral electron fluxes, and their accuracy is quantified thanks to dedicated metrics.
机译:在地磁风暴期间,已知外带中的磁场被太阳风显着扭曲,使得外带动力学可以极大地受到磁场拓扑的影响。在此上下文中,我们开发了一种减少的Fokker-Planck代码,包括通过预处理,后处理和第一次使用的步骤来实现与现实磁场模型(通过使用现有的专用LanlGeomAg库)相关的效果减少的Fokker-Planck扩散方程本身。我们在1990年10月9日至10月15日期出现的地磁风暴框架中执行弗吉克 - 普朗克方程的解决方案。通过使用组合释放和辐射效应卫星观察,磁场模型显示强烈影响与观测的调解理论的方式(处理步骤)。更具体地,我们在分析上和数值上解释了为什么使用偶极字段的使用可能导致对由电子分布函数显示的本地增强(归因于本地加速度)的误导性解释,从而导致仿真不准确的模拟导致大的L-壳产生不准确的模拟。对现实领域的考虑不会产生任何人造峰。利用这种校正数据集,可以通过径向传输来描述动态的大部分,因此模拟更好地再现。通过计算单向,全向和整体的电子通量,进一步强调了田间几何形状的这种关键重要性,并且由于专用度量,它们的准确性被量化。

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