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Thermospheric tidal effects on the ionospheric midlatitude summer nighttime anomaly using SAMI3 and TIEGCM

机译:Thermospheric潮汐对电离层的影响中间纬度夏季夜间使用SAMI3异常和TIEGCM

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This paper is the first study to employ a three-dimensional physics-based ionosphere model, SAMI3, coupled with the National Center for Atmospheric Research Thermosphere Ionosphere Electrodynamics General Circulation Model (TIEGCM) and Global Scale Wave Model to simulate the mesospheric and lower thermospheric tidal effects on the development of midlatitude summer nighttime anomaly (MSNA). Using this coupled model, the diurnal variation of MSNA electron densities at 300 km altitude is simulated on both June solstice (day of year (DOY) 167) and December solstice (DOY 350) in 2007. Results show successful reproduction of the southern hemisphere MSNA structure including the eastward drift feature of the southern MSNA, which is not reproduced by the default SAMI3 runs using the neutral winds provided by the empirical Horizontal Wind Model 93 neutral wind model. A linear least squares algorithm for extracting tidal components is utilized to examine the major tidal component affecting the variation of southern MSNA. Results show that the standing diurnal oscillation component dominates the vertical neutral wind manifesting as a diurnal eastward wave-1 drift of the southern MSNA in the local time frame. We also find that the stationary planetary wave-1 component of vertical neutral wind can cause diurnal variation of the summer nighttime electron density enhancement around the midlatitude ionosphere.
机译:本文研究首次采用三维物理电离层模型,SAMI3,加上国家中心大气研究热大气层电离层电动力学环流模式(TIEGCM)和全球范围内波模型模拟中间层和降低thermospheric潮汐对中间纬度夏天的发展的影响夜间异常(MSNA)。模型,MSNA电子的昼夜变化密度在300公里的高度模拟两种夏至((机灵)167年的一天)在2007年冬至机灵(350)。成功繁殖的南部半球MSNA结构包括向东MSNA南部的漂移特性,它不是复制默认SAMI3运行使用中性风所提供的经验水平风模型93中性风模型。线性最小二乘算法提取潮汐是用来检查主要组件潮汐分量影响的变化MSNA南部。周日振荡分量占主导地位垂直的中性风展现作为一个昼夜东第一波MSNA南部的漂移当地时间框架。静止的行星第一波组件的垂直中性风会导致的昼夜变化夏季夜间电子密度的提高在中间纬度电离层。

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