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Storm time behavior of topside scale height inferred from the ionosphere-plasmasphere model driven by the F2 layer peak and GPS-TEC observations

机译:由F2层峰值和GPS-TEC观测值驱动的电离层-等离子层模型推断的顶面尺度高度的风暴时间行为

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摘要

The International Reference Ionosphere model extended to the plasmasphere, IRI-Plas, presents global electron density profiles and total electron content, TECiri, up to the altitude of the GPS satellites (20,000 km). The model code is modified by input of GPS-derived total electron content, TECgps, so that the topside scale height, Hsc, is obtained minimizing in one step the difference between TECiri and TECgps observation. The topside basis scale height, Hsc, presents the distance in km above the peak height at which the peak plasma density, NmF2, decays by a factor of e (~2.718). The ionosonde derived F2 layer peak density and height and GPS-derived TECgps data are used with IRI-Plas code during the main phase of more than 100 space weather storms for a period of 1999-2006. Data of seven stations are used for the analysis, and data from five other stations served as testing database. It is found that the topside basis scale height is growing (depressing) when the peak electron density (critical frequency foF2) and electron content are decreased (increased) compared to the median value, and vice versa. Relative variability of the scale height, rHsc, and the instantaneous Hsc are inferred analytically in a function of the instantaneous foF2, median fmF2 and median Hmsc avoiding a reference to geomagnetic indices. Results of validation suggest reliability of proposed algorithm for implementation in an operational mode.
机译:国际参考电离层模型扩展到等离子层IRI-Plas,显示了全球电子密度分布图和总电子含量TECiri,直至GPS卫星的高度(20,000公里)。通过输入GPS衍生的总电子含量TECgps来修改模型代码,以便获得第一步的顶标高度Hsc,从而最大程度地减小TECiri和TECgps观测值之间的差异。顶侧基准刻度高度Hsc表示距峰值高度的距离(以千米为单位),在该距离处,峰值血浆密度NmF2衰减e倍(〜2.718)。在1999年至2006年期间的100多次空间天气风暴的主要阶段中,使用离子探空仪得出的F2层峰密度和高度以及GPS得出的TECgps数据与IRI-Plas代码一起使用。使用七个站点的数据进行分析,另外五个站点的数据用作测试数据库。可以发现,当峰值电子密度(临界频率foF2)和电子含量与中值相比降低(增加)时,顶侧基准尺度高度在增加(降低),反之亦然。可以根据瞬时foF2,中值fmF2和中值Hmsc解析地推断出标尺高度rHsc和瞬时Hsc的相对变化,从而避免了参考地磁指数。验证结果表明所提出算法在操作模式下的可靠性。

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