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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Strong disturbance of the upper thermospheric density due to magnetic storms: CHAMP observations
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Strong disturbance of the upper thermospheric density due to magnetic storms: CHAMP observations

机译:强烈的上层thermospheric干扰由于磁密度风暴:冠军观察

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Strong enhancements of the upper thermospheric total mass density were observed by the CHAMP satellite at approximately 400 km altitude during three geomagnetic superstorms occurring on 29–30 October 2003, 30–31 October 2003, and 20–22 November 2003. The corresponding density enhancements peaked around 400%, 500%, and 800% of the quiet-time values in both noon and midnight sectors. The disturbances showed strong noon–midnight and hemispheric/seasonal asymmetry. In the noon sector, the average density enhancement was stronger in summer (southern) than in the winter (northern) hemisphere. In the midnight sector, however, no general conclusion can be drawn about the seasonal effect. Stronger density enhancements occurred in the summer hemisphere during the second and third storm events, while in the winter hemisphere during the first storm event. The relative intensity of the disturbance between day and night is strongly dependent on our definition of the intensity. When expressed in absolute terms (storm-quiet), the density enhancement at night was generally less than half of that at day during all three storms. When expressed in percentage terms (), however, the enhancement at night was comparable to or even larger than that at day. The propagation of the disturbance from high to low latitudes during the November storm was faster in summer (southern) than in the winter (northern) hemisphere on both dayside and nightside. In the winter hemisphere, the propagation on the dayside was found to be faster than on the nightside. These variations of the seasonal/hemispheric asymmetry with local time and individual event imply that the many different competing processes involved in a magnetic storm may also vary dramatically with local time and from event to event. The MSIS90 model was unable to reproduce most of the observed features of these three storms.
机译:强烈的上层thermospheric增强总质量密度观察的冠军卫星在约400公里的高度三个地磁超级风暴发生在29 - 30日2003年10月,2003年10月30日至31日,20 - 222003年11月。增强峰值约为400%,500%,800%在中午和安静的时间值午夜的行业。noon-midnight和半球/季节性的不对称。在中午部门,平均密度增强在夏季强(南部)比在冬天(北部)半球。午夜的部门,但是,没有通用的结论可以得出关于季节性效应。密度增强发生在夏天在第二个和第三个风暴半球事件,而在冬季半球第一次风暴事件。昼夜之间的强烈干扰依赖强度的定义。当表达的绝对(storm-quiet),密度增强,晚上一般不到一半的,在这三天风暴。然而,晚上增强可比性甚至大于天。从高到低扰动的传播纬度在11月风暴还快冬天夏天(南部)比(北部)半球的光面和阴面。冬季半球,传播的光面被发现的速度比阴面。这些变化的季节/半球不对称与当地时间和个人事件意味着许多不同的竞争过程参与磁暴也不尽相同显著的当地时间和事件事件。大部分的观察这三个特性风暴。

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