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首页> 外文期刊>Advances in space research >Ionospheric winter anomaly and annual anomaly observed from Formosat-3/COSMIC Radio Occultation observations during the ascending phase of solar cycle 24
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Ionospheric winter anomaly and annual anomaly observed from Formosat-3/COSMIC Radio Occultation observations during the ascending phase of solar cycle 24

机译:在太阳周期的上升阶段,从Formosat-3 / COSMIC无线电掩星观测观测到的电离层冬季异常和年度异常24

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Ionospheric winter and annual anomalies have been investigated during the ascending phase of solar cycle 24 using high-resolution global 3D - data of the FORMOSAT - 3/COSMIC (Formosa satellite - 3/Constellation Observing System for Meterology, Ionosphere and Climate) radio occultation observations. Our detailed analysis shows that the occurrence of winter anomaly at low-latitudes is confined only to the early morning to afternoon hours, whereas, the winter anomaly at mid-latitudes is almost absent at all local times during the ascending phase of solar cycle 24. Further, in the topside ionosphere (altitudes of 400 km and above), the winter anomaly is completely absent at all local times. In contrast, the ionospheric annual anomaly is consistently observed at all local times and altitudes during this ascending phase of solar cycle 24. The annual anomaly exhibits strong enhancements over southern EIA crest latitudes during day time and around Weddle Sea Anomaly (WSA) region during night times. The global mean annual asymmetry index is also computed to understand the altitudinal variation. The global mean AI maximizes around 300-500 km altitudes during the low solar active periods (2008-10), whereas it extends up to 600 km during moderate to high (2011) solar activity period. These findings from our study provide new insights to the current understanding of the annual anomaly.
机译:使用高分辨率全球3D-FORMOSAT-3 / COSMIC(福尔摩沙卫星-3 /气象学,电离层和气候星座观测系统)无线电掩星观测资料,研究了太阳周期24上升阶段的电离层冬季和年度异常。我们的详细分析表明,低纬度冬季异常的发生仅限于清晨到下午,而在太阳周期24的上升阶段,中纬度冬季异常几乎在所有当地时间都没有。此外,在顶侧电离层(海拔400公里以上)中,在所有当地时间都完全没有冬季异常。相反,在太阳周期24的这个上升阶段,在所有当地时间和海拔高度都始终观察到电离层的年度异常。该年度异常在白天白天和夜间在Weddle Sea Anomaly(WSA)地区周围表现出比南部EIA顶纬度强烈的增强。次。还计算了全球平均年度不对称指数,以了解高度变化。在低太阳活跃期(2008-10)期间,全球平均AI最高可达到300-500 km的高度,而在中等到高(2011)太阳活跃期中,全球平均AI可达600 km。我们研究的这些发现为当前对年度异常的理解提供了新的见解。

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