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A simulation on the global mean structure of the ionosphere and thermosphere

机译:对电离层和热圈全球平均结构的模拟

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In this paper, we examine the global mean structures of the ionosphere and thermosphere for geomagnetic quiet condition using a new global three-dimensional self-consistent model of the ionosphere and thermosphere (GCITEM-IGGCAS, Global Coupled Ionosphere-Thermosphere-Electrodynamics Model, Institute of Geology and Geophysics, Chinese Academy of Sciences). GCITEM-IGGCAS self-consistently calculates the time-dependent three-dimensional structures of the main parameters of the ionosphere and thermosphere for the height range from 90 to 600 km. For example, neutral number density of O, N, O, N(D), N(S), NO, He and Ar; ion number densities of O, O, N, NO, N and electron; neutral, electron and ion temperature; neutral wind; and ionospheric electric fields. We simulates the main features of the global mean structures of the ionosphere and thermosphere using this model, and the simulated results agree well with the empirical models. We also simulate the seasonal variations of the global mean structures of the ionosphere and thermosphere in this paper.
机译:在本文中,我们使用新的全球三维自洽模型的电离层和热层(GCITEM-IgCAS,全球耦合电离层 - 热层 - 电动力学模型中国科学院地质与地球物理。 GCITEM-IgGCAS自始终计算电离层和热圈的主要参数的时间依赖性三维结构,高度范围为90至600公里。例如,o,n,o,n(d),n(s),no,he和ar的中性数密度; O,O,N,NO,N和电子的离子数密度;中性,电子和离子温度;中立风;和电离层电场。我们使用该模型模拟电离层和热圈的全局平均结构的主要特征,模拟结果与经验模型很好。我们还模拟了本文中的电离层和热圈的全局平均结构的季节变化。

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