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A Numerical Study of the Thermospheric Overcooling During the Recovery Phases of the October 2003 Storms

机译:一个数值研究Thermospheric过冷在2003年10月的复苏阶段风暴

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Previous studies showed that the density overcooling in the thermosphere during the recovery phases of the October 2003 storms was not reproduced by the National Center for Atmospheric Research Thermosphere-Ionosphere Electrodynamics General Circulation Model. In this study, a series of controlled numerical experiments were carried out to explore the processes responsible for the neutral density overcooling. It was found that the simulation with the temperature-dependent reaction rate of N(~2D) + O_2 from Duff et al. (2003, https://doi.org/10.1029/2002GL016720) can better capture the overcooling during the recovery phases of the October 2003 storms. Our study also demonstrated that the thermosphere recovery strongly depends on the altitudinal distribution of NO emission per mass rather than the NO cooling flux alone. During the storm recovery phases, the temperature starts to show overcooling in 110-180 km where the NO increases primarily, which has great contribution to the density overcooling.
机译:先前的研究表明,密度过冷时热大气层2003年10月风暴的复苏阶段不是由国家中心复制大气研究Thermosphere-Ionosphere电动力学环流模型。这项研究中,一系列的数值控制实验进行了探讨流程负责中性密度过冷。与温度有关的反应速度达夫~ N (2D) + O_2 from et al . (2003),https://doi.org/10.1029/2002GL016720)可以更好地经济复苏期间捕获过冷2003年10月风暴的阶段。证明了热电离层复苏强烈依赖于高度的分布没有排放/质量而不是没有冷却通量。阶段,温度开始表演在110 - 180公里的地方没有增加过冷主要是,伟大的贡献密度过冷。

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