首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Modeling the Dynamics of Radiation Belt Electrons With Source and Loss Driven by the Solar Wind
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Modeling the Dynamics of Radiation Belt Electrons With Source and Loss Driven by the Solar Wind

机译:辐射带电子的动力学建模源和损失由太阳风

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A radial diffusion model directly driven by the solar wind is developed to reproduce MeV electron variations between L = 2-12 (L is L* in this study) from October 2012 to April 2015. The radial diffusion coefficient, internal source rate, quick loss due to EMIC waves, and slow loss due to hiss waves are all expressed in terms of the solar wind speed, dynamic pressure, and interplanetary magnetic field (IMF). The model achieves a prediction efficiency (PE) of 0.45 at L = 5 and 0.51 at L = 4 after converting the electron phase space densities to differential fluxes and comparing with Van Allen Probes measurements of 2 and 3 MeV electrons at L = 5 and L = 4, respectively. Machine learning techniques are used to tune parameters to get higher PE. By tuning parameters for every 60-day period, the model obtains PE values of 0.58 and 0.82 at L = 5 and L = 4, respectively. Inspired by these results, we divide the solar wind activity into three categories based on the condition of solar wind speed, IMF Bz, and dynamic pressure, and then tune these three sets of parameters to obtain the highest PE. This experiment confirms that the solar wind speed has the greatest influence on the electron flux variations, particularly at higher L, while the dynamic pressure has more influence at lower L. Also, the PE at L = 4 is mostly higher than those at L = 5, suggesting that the electron loss due to the magnetopause shadowing combined with the outward radial diffusion is not well captured in the model.
机译:直接由径向扩散模型太阳风开发繁殖兆电子伏电子L = 2 - (L L *之间的差异研究)从2012年10月到2015年4月。径向扩散系数、内部来源率,快速损失位的波,而缓慢的损失由于嘘波都是表达的太阳风速度、动压和行星际磁场(IMF)。达到0.45的预测效率(PE)L = 5和0.51 L = 4转换后电子相空间密度差通量与范艾伦辐射探测器和比较测量2和3兆电子伏电子L = 5分别和L = 4。技术是用来优化参数更高的体育。期间,该模型获得的0.58和PE值0.82 L = 5 L = 4,分别。通过这些结果,我们把太阳风基于活动分为三个类别太阳风速度条件,国际货币基金组织(IMF) Bz和动压,然后调整这三集的参数来获得最高的体育。实验证实,太阳风速度电子通量的影响最大变化,特别是在更高的L,而动态压力较低的L具有更大的影响。此外,体育主要是高于L = 4在L = 5,表明电子损失磁层阴影结合径向向外扩散是不能很好地捕捉到该模型。

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