首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Local-Time Variabilities of March Equinox Daytime SABER CO_2 in the Upper Mesosphere and Lower Thermosphere Region
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Local-Time Variabilities of March Equinox Daytime SABER CO_2 in the Upper Mesosphere and Lower Thermosphere Region

机译:3月份昼夜单昼夜跨越式跨越式跨越叶片和下热层区域的局部时间变量

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This work reports the analysis of the local-time variations of daytime CO_2 in the Upper Mesosphere and Lower Thermosphere region as observed by the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument onboard the Thermosphere Ionosphere Mesosphere Energetics and Dynamics satellite. Results show that daytime SABER CO_2 in the upper mesosphere between latitudes 30°S and 50°N is lower in the morning than in the afternoon. The same was found in the lower thermosphere but between latitudes 50°S and 50°N. The opposite was found in the upper mesosphere between 50°S and 30°S. These results are compared to simulations of CO_2 by the Whole Atmosphere Community Climate Model-eXtended. It was found that the local-time variations of Whole Atmosphere Community Climate Model-eXtended CO_2 are weaker than SABER CO_2. Model diagnostics indicated that these local-time variations in the model are driven primarily (secondarily) by strong vertical (meridional) gradients in Upper Mesosphere and Lower Thermosphere CO_2 volume mixing ratios and strong local-time variations in vertical (meridional) winds. This work concludes that SABER CO_2 shows significant local-time variations that are not well simulated by Whole Atmosphere Community Climate Model-eXtended, and we suggest that this is likely because of weaker tidal forcing in the model.
机译:本作品报告了通过使用宽带排放辐射测量(Saber)仪表在热际电离层Mesophy能量和动力学卫星上观察到通过使用宽带发射辐射测量(Saber)仪表来观察到的上部介体和低温区域中白天CO_2的局部时间变化。结果表明,在淡出水平30°S和50°N之间的上部介质层中的白天Saber Co_2在早上比下午更低。在较低的热圈中发现了同样的,但在50°S和50°N之间。在50°S和30°S之间的上部椎间晶中发现相反。这些结果与整个大气群落气候模型延伸的CO_2的模拟。结果发现,全部大气群落气候模型 - 扩展CO_2的局部时间变化比Saber Co_2弱。模型诊断表明,这些模型中的这些局部时间变化主要(二次)通过上部介质层的强垂直(分段)和较低的ThermoSphere Co_2体积混合比和垂直(子午线)风的强烈局部时间变化。这项工作得出结论,Saber Co_2显示了整个大气群落气候模型扩展的显着局部时间变化,我们认为这可能是由于模型中的潮汐迫使较弱。

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