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A total electron content space weather study of the nighttime Weddell Sea Anomaly of 1996/1997 southern summer with TOPEX/Poseidon radar altimetry

机译:夜间Weddell海洋异常的全电子含量空间天气研究1996/1997南夏与Topex / Poseidon雷达Altimetry

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摘要

This paper reports on a total electron content space weather study of the nighttime Weddell Sea Anomaly, overlooked by previously published TOPEX/Poseidon climate studies, and of the nighttime ionosphere during the 1996/1997 southern summer. To ascertain the morphology of spatial TEC distribution over the oceans in terms of hourly, geomagnetic, longitudinal and summer-winter variations, the TOPEX TEC, magnetic, and published neutral wind velocity data are utilized. To understand the underlying physical processes, the TEC results are combined with inclination and declination data plus global magnetic field-line maps. To investigate spatial and temporal TEC variations, geographic/magnetic latitudes and local times are computed. As results show, the nighttime Weddell Sea Anomaly is a large (∼1,600(°)2; ∼22 million km2 estimated for a steady ionosphere) space weather feature. Extending between 200°E and 300°E (geographic), it is an ionization enhancement peaking at 50°S–60°S/250°E–270°E and continuing beyond 66°S. It develops where the spacing between the magnetic field lines is wide/medium, easterly declination is large-medium (20°–50°), and inclination is optimum (∼55°S). Its development and hourly variations are closely correlated with wind speed variations. There is a noticeable (∼43%) reduction in its average area during the high magnetic activity period investigated. Southern summer nighttime TECs follow closely the variations of declination and field-line configuration and therefore introduce a longitudinal division of four (Indian, western/eastern Pacific, Atlantic). Northern winter nighttime TECs measured over a limited area are rather uniform longitudinally because of the small declination variation. TOPEX maps depict the expected strong asymmetry in TEC distribution about the magnetic dip equator.
机译:这对夜间的威德尔海异常总电子含量空间天气研究论文报道,忽视了先前公布的TOPEX /海神气候研究,以及1996/1997南部夏季夜间电离层。为了确定在海洋空间TEC分布的形态在每小时,地磁,纵向和夏冬季变化方面,TOPEX TEC,磁性,和公布的中性风速数据被利用。了解底层物理过程,在TEC的结果相结合,与倾斜和磁偏角数据加上全球磁场线地图。为了研究的空间和时间变化TEC,地理/磁性纬度和本地时间被计算。如结果所示,在夜间威德尔海异常是一个大的(~1,600(°)2;约22百万平方公里估计稳态电离层)空间天气特征。 200°E和300°E(地理)之间延伸的,它是在50℃的S-60°S / 250°E-270°E电离增强峰值和持续超越66°S。它开发,其中磁场线之间的间隔是宽/介质,东风偏角较大的培养基(20°-50°),和倾斜度是最佳的(约55°S)。它的发展和每小时变化与风速的变化密切相关。有一个明显的减少(~43%)在它的平均面积在所研究的高磁活动周期。南方夏季夜间的TEC遵循偏角和现场线路配置的密切变化,因此引入四(印度,西/东太平洋,大西洋)的纵向分工。在一个有限的区域中测量北方冬季夜间的TECs是相当均匀的纵向因为小偏角变化。 TOPEX地图描绘了关于磁倾角赤道TEC分布预期强烈的不对称性。

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    Ildiko Horvath;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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