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首页> 外文期刊>Geophysical Research Letters >Solar cycle effects in planetary geomagnetic activity: Analysis of 36-year long OMNI dataset
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Solar cycle effects in planetary geomagnetic activity: Analysis of 36-year long OMNI dataset

机译:行星地磁活动中的太阳周期效应:长达36年的OMNI数据集分析

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摘要

NSSDC's OMNI dataset, which now spans 1963-1999, contains a collection of hourly means of interplanetary magnetic field (IMF) and solar wind (SW) plasma parameters measured near the Earth's orbit, as well as some auxiliary data. We report a study of solar cycle effects in planetary geomagnetic activity in which 27-day averages of several OMNI parameters are compared with equivalent Kp and Dst averages. Some established trends in these parameters over solar cycles are confirmed; for example, it is concluded that changes in the magnitude (rather than in direction) constitute the primary solar cycle variation in the IMF. However, this study also reveals that long-term changes in planetary geomagnetic activity are driven more actively by solar wind-magnetosphere coupling of an electrodynamic nature rather than by plasma transport into the magnetosphere. This suggests that ambient (background) interplanetary "electric" environment (in which the Earth's magnetosphere is immersed over the solar cycles) may play a more significant role in causing changes in the frequency of geomagnetic storms and substorms than previously realized. [References: 14]
机译:NSSDC的OMNI数据集(现在跨越1963-1999)包含了在地球轨道附近测得的每小时行星际磁场(IMF)和太阳风(SW)等离子体参数的小时平均值的集合,以及一些辅助数据。我们报告了对地球地磁活动中太阳周期影响的研究,其中将多个OMNI参数的27天平均值与等效的Kp和Dst平均值进行了比较。证实了这些参数在太阳周期中的一些确定趋势;例如,可以得出结论,幅度的变化(而不是方向)构成了IMF中主要的太阳周期变化。但是,这项研究还表明,行星地磁活动的长期变化是由具有电动性质的太阳风-磁层耦合而不是由等离子传输到磁层来更积极地驱动的。这表明环境(背景)星际“电”环境(地球的磁层浸没在太阳周期中)在引起地磁风暴和亚风暴的频率变化方面可能比以前意识到的作用更大。 [参考:14]

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