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Impact of magnetic storms on the global TEC distribution

机译:磁暴对全球TEC分布的影响

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The study is focused on the analysis of total electron content (1'LC) variations during six geomagnetic storms of different intensity: from Dst(min) = -46 nT to Dst(min) = -223 nT. The values of TEC deviations from its 27-day median value (delta TEC) were calculated during the periods of the storms along three meridians: American, Euro-African and Asian-Australian. The following results were obtained. For the majority of the storms almost simultaneous occurrence of delta TEC maximums was observed along all three meridians at the beginning of the storm. The transition from a weak storm to a superstorm (the increase of magnetic activity) almost does not affect the intensity of the 8 TEC maximum. The seasonal effect was most pronounced along the Asian-Australian meridian, less often along the Euro-African meridian and was not revealed along the American meridian. Sometimes the seasonal effect can penetrate to the opposite hemisphere. The character of average 8 TEC variations for the intense storms was confirmed by GOES satellite data. Though there are some common features of TEC variation revealed during each storm phase, in general no clear dependence of TEC responses on the storm phases was found: the effects were different during each storm at different locations. The behavior of the correlation coefficient (R) between delta TEC values along the three meridians was analyzed for each storm. In general, R 0.5 between delta TEC values averaged along each meridian. This result is new. The possible reasons for the exceptions (when R 0.5) were provided: the complexity of phenomena during the intense storms and discordance in local time of the geomagnetic storm beginning along different meridians. Notwithstanding the complex dependence of R on the intensity of magnetic disturbance, in general R decreased with the growth of storm intensity.
机译:该研究的重点是分析六种不同强度的地磁风暴期间的总电子含量(1'LC)变化:从Dst(min)= -46 nT到Dst(min)= -223 nT。在暴风雨期间,沿着三个子午线(美国,欧洲-非洲和亚洲-澳大利亚)计算了TEC偏离其27天中值(三角洲TEC)的值。获得了以下结果。对于大多数暴风雨,在暴风雨开始时,沿所有三个子午线都几乎同时出现了TEC最大值的同时出现。从弱风暴到超级风暴的过渡(磁活动的增加)几乎不影响8 TEC最大值的强度。季节性影响在亚洲-澳大利亚子午线上最为明显,在欧洲-非洲子午线上则较少,而在美国子午线上却没有。有时,季节性影响会渗透到相对的半球。 GOES卫星数据证实了强风暴的平均8 TEC变化的特征。尽管在每个暴风雨阶段都揭示了TEC变化的一些共同特征,但总的来说,并未发现TEC响应对暴风雨阶段的明确依赖:在每次暴风雨期间,在不同的位置其影响都不同。针对每个风暴,分析了沿三个子午线的TEC增量值之间的相关系数(R)的行为。通常,沿每个子午线的TEC平均值之间的R> 0.5。这个结果是新的。提供了例外情况的可能原因(当R <0.5时):强烈风暴期间现象的复杂性以及沿着不同子午线开始的地磁风暴在当地时间的不一致。尽管R对磁干扰强度的依赖性很复杂,但通常R随着风暴强度的增加而降低。

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  • 来源
    《Annales Geophysicae》 |2018年第4期|1057-1071|共15页
  • 作者单位

    St Petersburg State Univ Aerosp Instrumentat, 67 Bolshaya Morskaya, St Petersburg 190000, Russia;

    Southern Fed Univ, Inst Phys, Stachki 194, Rostov Na Donu 344090, Russia;

    Univ Nacl Autonoma Mexico, Inst Geofis, SCiESMEX, LANCE,Unidad Michoacan, Morelia 58089, Michoacan, Mexico;

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