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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The Midlatitude Thermospheric Dynamics From an Interhemispheric Perspective
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The Midlatitude Thermospheric Dynamics From an Interhemispheric Perspective

机译:从一个在中间纬度Thermospheric动力学两半球间的角度

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Using Fabry-Perot interferometers at five midlatitude stations (Boulder, Palmer, Millstone Hill, Mount John, and Kelan) in both hemispheres, we examine the interhemispheric and seasonal variations of midlatitude thermospheric dynamics. We also use the National Center for Atmospheric Research Thermosphere Ionosphere Electrodynamics General Circulation Model (TIEGCM) to simulate the seasonal changes of winds and the effects from Sub-Auroral Polarization Streams. The observations and TIEGCM simulations show a clear seasonal variation with more westward and equatorward summer winds. The TIEGCM runs overestimate the westward zonal winds and underestimate the electron densities in the northern summer. We believe that the underestimated TIEGCM electron density leads to a weak ion drag effect in the model, and strong westward zonal winds. TIEGCM overestimates the Sub-Auroral Polarization Stream effects on neutral winds in most cases, probably because the empirical Sub-Auroral Polarization Stream model used by the TIEGCM applies an unrealistic persistent electric field for a long period of time (over 3 hr) due to the low temporal resolution of the Kp index.
机译:利用法布里-珀罗干涉仪在5中间纬度站(博尔德帕尔默,磨石山,山约翰和乌克兰)在两个半球,我们检查两半球间的和季节性变化的中间纬度thermospheric动力学。我们也使用国家中心的大气研究热大气层电离层电动力学环流模式(TIEGCM)来模拟风和季节性变化的影响从亚极光极化流。观察和TIEGCM模拟显示清晰与更多的向西和季节性变化朝赤道方向夏季风。高估了西纬向风和低估的电子密度北方的夏天。低估了TIEGCM电子密度导致弱离子拖拽效应模型中,坚强西纬向风。亚极光极化流的影响中性风在大多数情况下,可能是因为实证亚极光极化流模型使用TIEGCM实行不切实际长期持久的电场时间(超过3小时)由于低时间解决Kp指数。

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