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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Reactions of the Middle Atmosphere Circulation and Stationary Planetary Waves on the Solar Activity Effects in the Thermosphere
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Reactions of the Middle Atmosphere Circulation and Stationary Planetary Waves on the Solar Activity Effects in the Thermosphere

机译:反应的循环和氛围静止的行星波在太阳活动影响热大气层

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摘要

Using numerical simulations of the general atmospheric circulation during boreal winter, statistically confident evidences are obtained for the first time, demonstrating that changes in the solar activity (SA) in the thermosphere at heights above 100 km can influence propagation and reflection conditions for stationary planetary waves (SPWs) and can modify the middle atmosphere circulation below 100 km. A numerical mechanistic model simulating atmospheric circulation and SPWs at heights 0-300 km is used. To achieve sufficient statistical confidence, 80 pairs of 15‐day intervals were extracted from an ensemble of 16 pairs of model runs corresponding to low and high SA. Results averaged over these intervals show that impacts of SA above 100 km change the mean zonal wind and temperature up to 10% at altitudes below 100 km. The statistically confident changes in SPW amplitudes due to SA impacts above 100 km reach up to 50% in the thermosphere and 10-15% in the middle atmosphere depending on zonal wavenumber. Changes in wave amplitudes correspond to variations of the Eliassen‐Palm flux and may alter dynamical and thermal SPW impacts on the mean wind and temperature. Thus, variable conditions of SPW propagation and reflection at thermospheric altitudes may influence the middle atmosphere circulation, thermal structure, and planetary waves.
机译:使用通用的数值模拟大气环流在北方的冬天,统计上自信的证据第一次证明的变化太阳活动(SA)在热大气层高度100公里以上可以影响传播为固定和反射条件行星波(SPWs)和可以修改中间大气环流低于100公里。机械模型模拟大气循环和SPWs山庄0 - 300公里。达到足够的统计信心,80对15天间隔的提取合奏16双模型相应的运行低和高SA。间隔表明,SA的影响超过100公里平均纬向风和温度改变10%海拔低于100公里。由于SA自信SPW振幅的变化影响100公里达到50%以上中间热电离层和10 - 15%的气氛根据纬向波数。振幅对应的变化Eliassen棕榈通量和可能改变动力和对平均风和热SPW影响温度。在thermospheric传播和反射高度可能会影响中间的气氛循环、热结构,和行星波。

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