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Correlating the interplanetary factors to distinguish extreme and major geomagnetic storms

机译:与间行星际因素相关,以区分极端和主要地磁风暴

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We investigate the correlation between Disturbance Storm Time(Dst)characteristics and solar wind conditions for the main phase of geomagnetic storms,seeking possible factors that distinguish extreme storms(minimum Dst<−250 nT)and major storms(minimum Dst<−100 nT).In our analysis of 170 storms,there is a marked correlation between the average rate of change of Dst during a storm’s main phase(ΔDst/Δt)and the storm’s minimum Dst,indicating a fasterΔDst/Δt as storm intensity increases.Extreme events add a new regime toΔDst/Δt,the hourly time derivative of Dst(dDst/dt),and sustained periods of large amplitudes for southward interplanetary magnetic field Bz and solar wind convection electric field Ey.We find that Ey is a less efficient driver of dDst/dt for extreme storms compared to major storms,even after incorporating the effects of solar wind pressure and ring current decay.When minimum Dst is correlated with minimum Bz,we observe a similar divergence,with extreme storms tending to have more negative Dst than the trend predicted on the basis of major storms.Our results enable further improvements in existing models for storm predictions,including extreme events,based on interplanetary measurements.
机译:我们调查扰动灾害时间(DST)特征和太阳风条件的相关性地磁风暴的相关性,寻求区分极端风暴(最小DST <-250nt)和重大风暴的可能因素(最低DST <-100 NT) 。在我们对170个风暴的分析中,DST在风暴主阶段(ΔDST/ΔT)和风暴最小DST期间DST的平均变化率之间存在明显的相关性,表示作为风暴强度的变速Δdst/Δt.Extreme事件添加新的制度ToΔdst/Δt,DST(DDST / DT)的每小时衍生物,以及向南行星际磁场BZ和太阳风对流电场Ey的大幅度的持续时期。我们发现EY是DDST的较低效率的驾驶员/ dt用于极端风暴与主要风暴相比,即使在纳入太阳风压和振铃电流衰减之后。当最小DST与最小BZ相关时,我们观察着类似的分歧,极端风暴趋于趋势比在主要风暴的基础上预测的趋势更加负面DST。我们的结果可以进一步改进现有的风暴预测模型,包括基于行星际测量的极端事件。

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