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首页> 外文期刊>Earth, planets and space: EPS >Variations in the equatorial ionization anomaly peaks in the Western Pacific region during the geomagnetic storms of April 6 and July 15, 2000
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Variations in the equatorial ionization anomaly peaks in the Western Pacific region during the geomagnetic storms of April 6 and July 15, 2000

机译:2000年4月6日和7月15日的地磁风暴期间,西太平洋地区的赤道电离异常峰的变化

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摘要

This study utilizes total electron content (TEC) observed by a network of ground-based GPS receivers located in the Western Pacific region (similar to 120 degrees E) to study the responses of the low-latitude equatorial ionization anomaly (EIA) to the two major magnetic storms that occurred during April 4-10 and July 12-18, 2000. The latitude, time, and TEC (LTT) maps in the northern and southern EIA regions show that both EIA peaks move equatorward along with a pronounced reduction of the TEC values 10-12 h after the storm onset. The variations in the EIA peak TEC values and locations in the northern EIA are highly correlated with those in the southern EIA. The correlation coefficients of the day-to-day variations of peaked TEC between the northern and southern EIA regions are 0.75 in the April storm and 0.83 in the July storm. The correlation coefficients of the day-to-day EIA peak movements between the two hemispheres are 0.98 in the April storm event and 0.88 in the July storm event. The highly correlated peaked TEC and movements between the northern and the southern hemisphere suggest that the storm-produced electrodynamics played a dominant role in affecting the low-latitude ionosphere during the two major storms.
机译:这项研究利用位于西太平洋地区(约120度E)的地面GPS接收器网络观测到的总电子含量(TEC)来研究低纬度赤道电离异常(EIA)对这两个卫星的响应在2000年4月4日至10日和7月12日至18日期间发生了主要的磁暴。EIA北部和南部地区的纬度,时间和TEC(LTT)图显示,两个EIA峰都向赤道移动,同时EIA峰明显减小。暴风雨开始后10-12小时的TEC值。 EIA北部的EIA峰值TEC值和位置的变化与南部EIA的高度相关。在EIA北部和南部地区,TEC峰值的日常变化的相关系数在4月的暴风雨中为0.75,7月的暴风雨为0.83。两个半球之间的日常EIA峰值移动的相关系数在4月风暴事件中为0.98,在7月风暴事件中为0.88。高度相关的峰值TEC和北半球与南半球之间的运动表明,风暴产生的电动力学在两次大风暴中对影响低纬度电离层起着主导作用。

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