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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Radiation Belt Environment model: Application to space weather nowcasting
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Radiation Belt Environment model: Application to space weather nowcasting

机译:辐射带环境模型:在空间天气预报中的应用

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摘要

A data-driven physical model of the energetic electrons in the Earth's radiation belts, called the Radiation Belt Environment (RBE) model, has been developed to understand Earth's radiation belt dynamics and to predict the radiation conditions found there. This model calculates radiation belt electron fluxes from 10 keV to 6 MeV in the inner magnetosphere. It takes into account the realistic, time-varying magnetic field and considers effects of wave-particle interactions with whistler mode chorus waves. The storm on 23–27 October 2002 is simulated and the temporal evolutions of the radial and pitch angle distributions of energetic electrons are examined. The calculated electron fluxes agree very well with particle data from the low-orbit SAMPEX and LANL geosynchronous satellites, when the wave-particle interactions are taken into account during storm recovery. Flux increases begin near the plasmapause and then diffuse outward to higher L shells, consistent with previous findings from statistical studies. A simplified version of the RBE model is now running in real time to provide nowcasting of the radiation belt environment. With further improvements and refinements, this model will have important value in both scientific and space weather applications.
机译:已经开发了一种数据驱动的地球辐射带中高能电子的物理模型,称为辐射带环境(RBE)模型,以了解地球的辐射带动力学并预测在那里发现的辐射条件。该模型计算出内部磁层中从10 keV到6 MeV的辐射带电子通量。它考虑了现实的时变磁场,并考虑了波粒相互作用与惠斯勒模式合唱波的影响。模拟了2002年10月23日至27日的风暴,并检查了高能电子的径向和俯仰角分布的时间演变。当在风暴恢复过程中考虑了波粒相互作用时,计算得到的电子通量与来自低轨道SAMPEX和LANL地球同步卫星的颗粒数据非常吻合。通量的增加开始于血浆停滞附近,然后向外扩散至较高的L壳,这与先前的统计研究结果一致。现在可以实时运行RBE模型的简化版本,以提供辐射带环境的临近预报。通过进一步的改进和完善,该模型将在科学和空间天气应用中都具有重要价值。

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