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首页> 外文期刊>Advances in space research >Statistical study of the time delay of ionospheric TEC storms to geomagnetic storms in Taoyuan, Taiwan
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Statistical study of the time delay of ionospheric TEC storms to geomagnetic storms in Taoyuan, Taiwan

机译:台湾桃园地磁风暴对电离层TEC风暴时滞的统计研究

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摘要

We have studied the time delay of ionospheric storms to geomagnetic storms at a low latitude station Taoyuan (25.02°N, 121.21°E), Taiwan using the Dst and TEC data during 126 geomagnetic storms from the year 2002 to 2014. In addition to the known local time dependence of the time delay, the statistics show that the time delay has significant seasonal characteristics, which can be explained within the framework of the seasonal characteristics of the ionospheric TEC. The data also show that there is no correlation between the time delay and the intensity of magnetic storms. As for the solar activity dependence of the time delay, the results show that there is no relationship between the time delay of positive storms and the solar activity, whereas the time delay of negative storms has weakly negative dependence on the solar activity, with correlation coefficient -0.41. Especially, there are two kinds of extreme events: pre-storm response events and long-time delay events. All of the pre-storm response events occurred during 15-20 LT, manifesting the Equator Ionospheric Anomaly (EIA) feature at Taoyuan. Moreover, the common features of the pre-storm response events suggest the storm sudden commencement (SSC) and weak geomagnetic disturbance before the main phase onset (MPO) of magnetic storms are two main possible causes of the pre-storm response events. By analyzing the geomagnetic indices during the events with long-time delay, we infer that this kind of events may not be caused by magnetic storms, and they might belong to ionospheric Q-disturbances.
机译:我们已经研究了在2002年至2014年的126年的地磁风暴中使用DST和TEC数据在桃园(25.02°N,121.21°E),台湾在桃园电站(25.02°N,121.21°E)到地磁风暴的时间延迟。除了已知局部时间依赖的时间延迟,统计数据表明,时间延迟具有显着的季节性特征,这可以在电离层TEC的季节性特征的框架内解释。数据还表明,磁风暴的时滞与强度之间没有相关性。至于太阳能活动依赖的时间延迟,结果表明,正面风暴的时间延迟与太阳能活动之间没有关系,而负暴风雨的时间延迟对太阳能活动有弱负极,具有相关系数-0.41。特别是,有两种极端事件:预测前响应事件和长期延迟事件。所有预暴风雨响应事件发生在15-20 LT期间,表现为桃园的赤道电离层异常(EIA)特征。此外,暴风雨前反应事件的共同特征表明暴风雨突然开始(SSC)和弱的地磁干扰在磁风暴的主阶段发作(MPO)是预暴风雨前反应事件的两个主要可能原因。通过在长期延迟的事件期间分析地磁指数,我们推断出这种事件可能不是由磁风暴引起的,并且它们可能属于电离层Q扰动。

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