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A radiation belt-ring current forecasting model

机译:辐射带环电流预报模型

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A radiation belt-ring current (RB-RC) forecasting model is presented. This model solves the convection-diffusion equation of plasma distribution in the 10 keV to a few MeV range. There are four major auxiliary components to the RB-RC model: a global magnetic field model, an electric field model, a plasma sheet model (plasma source), and a radial diffusion model. All four components are driven by solar wind and interplanetary magnetic field conditions. In this paper, a brief description of the model and input parameters is given. This model has been used to simulate several geomagnetic storms. In particular, the effects of the inductive electric field on the evolution of the radiation belt electron fluxes are investigated in detail via a case study of the 12 August 2000 storm. It is found that, in general, the inductive electric field arising from the time-varying magnetic field can enhance the flux level around geosynchronous orbit during the recovery phase of the storms. The model is validated through comparing the simulation results with the Los Alamos National Laboratory satellite measurements. Further refinement and improvement of the model is also discussed.
机译:提出了辐射带环电流(RB-RC)预测模型。该模型解决了在10 keV到几MeV范围内的等离子体分布的对流扩散方程。 RB-RC模型有四个主要的辅助组件:整体磁场模型,电场模型,等离子片模型(等离子源)和径向扩散模型。所有这四个分量都是由太阳风和行星际磁场条件驱动的。在本文中,给出了模型和输入参数的简要说明。该模型已用于模拟几次地磁风暴。特别是,通过对2000年8月12日风暴的案例研究,详细研究了感应电场对辐射带电子通量演变的影响。人们发现,通常,由时变磁场引起的感应电场可以在风暴恢复阶段增强地球同步轨道周围的通量水平。通过将仿真结果与洛斯阿拉莫斯国家实验室的卫星测量结果进行比较,验证了该模型的有效性。还讨论了模型的进一步改进和改进。

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