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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Simulation and Observation of Lunar Tide Effect on High-Latitude, Mesospheric and Lower Thermospheric Winds During the 2013 Sudden Stratospheric Warming Event
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Simulation and Observation of Lunar Tide Effect on High-Latitude, Mesospheric and Lower Thermospheric Winds During the 2013 Sudden Stratospheric Warming Event

机译:仿真和观测月球潮汐的影响高纬度地区、中间层和低在2013年突然Thermospheric风平流层变暖事件

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摘要

We investigate the high-latitude mesospheric and lower thermospheric winds during the 2013 sudden stratospheric warming event using ground-based optical Doppler remote sensing observations of the OH and O (557.7 nm) emission from Eureka (80°N, 86°W) and Thermosphere Ionosphere Mesosphere Electrodynamics-General Circulation Model (TIME-GCM) simulations. Simulations with and without lunar tidal forcing of the TIME-GCM were performed. It has been found that the additional lunar tidal forcing only impacts slightly the semidiurnal tidal amplitude and phase at Eureka. The TIME-GCM simulations still have noticeable discrepancies in the mean winds and the semidiurnal tidal amplitude and phase compared to the observations. The semidiurnal tidal phase shift during the stratospheric warming event may be associated with the sudden stratospheric warming related zonal mean wind reversal, which is similar to the seasonal change in the zonal mean wind from winter to summer. Accordingly, during the reversal, more modes of the semidiurnal tide propagate to the mesosphere, changing the phase of the semidiurnal tide.
机译:我们调查了高纬度地区气层在2013年突然低thermospheric风使用地面平流层变暖事件光学多普勒的遥感观测哦,O尤里卡(557.7 nm)的排放(80°N, 86°W)和热大气层电离层中间层Electrodynamics-General循环模型(TIME-GCM)模拟。没有月球潮汐TIME-GCM的强迫被执行。额外的月球潮汐迫使只影响半日潮汐振幅和略尤里卡阶段。有明显的差异意味着风和半日潮振幅和相位而观察。在平流层潮汐相移可能会突然变暖事件平流层纬向平均风相关的变暖逆转,这是类似于季节变化在纬向平均风从冬季到夏季。因此,在逆转,更多的模式中间层的半日潮传播,改变阶段的半日潮。

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