首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Analysis of trends between solar wind velocity and energetic electron fluxes at geostationary orbit using the reverse arrangement test
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Analysis of trends between solar wind velocity and energetic electron fluxes at geostationary orbit using the reverse arrangement test

机译:太阳风速度和分析趋势高能电子通量在地球静止轨道使用反向安排测试

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摘要

A correlation between solar wind velocity (VSW) and energetic electron fluxes (EEF) at the geosynchronous orbit was first identified more than 30 years ago. However, recent studies have shown that the relation between VSW and EEF is considerably more complex than was previously suggested. The application of process identification technique to the evolution of electron fluxes in the range 1.8 - 3.5 MeV has also revealed peculiarities in the relation between VSW and EEF at the geosynchronous orbit. It has been revealed that for a constant solar wind density, EEF increase with V SW until a saturation velocity is reached. Beyond the saturation velocity, an increase in VSW is statistically not accompanied with EEF enhancement. The present study is devoted to the investigation of saturation velocity and its dependency upon solar wind density using the reverse arrangement test. In general, the results indicate that saturation velocity increases as solar wind density decreases. This implies that solar wind density plays an important role in defining the relationship between VSW and EEF at the geosynchronous orbit. Key Points Flux of energetic electrons controlled by solar wind density/velocity.Below a certain velocity EEF correlates with Vsw. Above it they are independentThis velocity depends on solar wind density.
机译:太阳风速度之间的相关性(甚短波)和充满活力的电子通量(EEF)地球同步轨道是首次发现比30年前。表明甚短波和EEF之间的关系比以前复杂得多建议。识别技术的发展电子通量范围在1.8 - 3.5兆电子伏还显示特性的关系在地球同步轨道甚短波和EEF之间。它被显示为一个常数太阳能风能密度,EEF增加与V SW之前饱和速度达到。饱和速度,增加甚短波统计上不伴随着EEF增强。调查饱和速度和它的依赖于太阳风密度使用反向安排测试。表明,饱和速度增加太阳风密度减少。太阳风密度中发挥着重要作用定义甚短波和EEF之间的关系地球同步轨道。充满活力的电子控制的太阳风密度/速度。与甚短波。independentThis速度取决于太阳风密度。

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