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首页> 外文期刊>Geomagnetism and aeronomy >Role of Averaging in Statistical Analysis of Solar Wind Data from the DSCOVR Spacecraft for the First Year of Operation
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Role of Averaging in Statistical Analysis of Solar Wind Data from the DSCOVR Spacecraft for the First Year of Operation

机译:在运行第一年的DSCOVR航天器的统计分析中平均统计分析的作用

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The results from a statistical analysis of solar wind data obtained near the Earth's orbit by the DSCOVR spacecraft for the period of one year starting August 2016 are discussed. The distribution of the solar wind temperature T for this period was bimodal and exhibited two maxima at 15 x 10(3) and 190 x 10(3) K (with a standard deviation of the same order of magnitude, respectively). This distribution can be represented as the sum of two lognormal distributions. The first peak of the T distribution is caused by the slow-cold wind component, the distributions of which over speed V and density n (varying in wide ranges) are also close to lognormal. This component covers slightly more than a quarter of the entire time period. A fast hot wind (the distribution maximum is at 310 x 10(3) K) can be distinguished from the remainder; this component covers slightly less than a quarter of the period. Its T, V, and n distributions are also close to lognormal. The rest the wind, nearly half, exhibits a complex jagged distribution over speed and a double-peak distribution over density. The conclusion is that data averaging is of key importance in the classification of solar wind at the quantitative level. This is shown by the results of data averaging over a minute, hour, day, and week.
机译:讨论了DSCOVR航天器在2016年8月开始的一年内的地球轨道附近获得的太阳风数据统计分析的结果。该时期的太阳风温度T的分布是双峰的,并且在15×10(3)和190×10(3)k处(分别具有相同数量级的标准偏差)显示两个最大值。该分布可以表示为两个逻辑正常分布的总和。 T分布的第一峰是由慢冷的风分量引起的,其分布在速度V和密度n(在宽范围内变化)也靠近逻辑。该组件涵盖整个时间段的四分之一。快速热风(分布最大值为310×10(3)k),可以与其余部分区分开;该组件覆盖略低于该期间的四分之一。它的T,V和N分布也靠近逻辑。风近一半的静止速度分布在速度和密度上的双峰分布上。结论是数据平均在定量水平的太阳风分类中具有重要意义。这由数据平均结果的结果显示在一分钟,小时,一天和一周内。

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