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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Seasonal variations of the nighttime O(1S) and OH airglow emission rates at mid-to-high latitudes in the context of the large-scale circulation
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Seasonal variations of the nighttime O(1S) and OH airglow emission rates at mid-to-high latitudes in the context of the large-scale circulation

机译:大尺度环流背景下中高纬度夜间O(1S)和OH气辉发射率的季节性变化

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摘要

The seasonal climatology of the O(1S) and OH nighttime airglow in the mesosphere and lower thermosphere (MLT) for the mid-to-high latitude region is explored in the context of the large-scale general circulation. Multiple years of the Wind Imaging Interferometer (WINDII) satellite data from November 1991 to August 1997 are monthly averaged to depict the global patterns of the seasonal variations of the airglow volume emission rates for various altitudes and local times. These observations are compared with the simulations of the Thermosphere-Ionosphere-Mesosphere Electrodynamics General Circulation Model (TIME-GCM). Both the WINDII and the TIME-GCM results display the semi-annual and annual variations of the O(1S) and OH airglow emission rates for specific altitudes and local times. The TIME-GCM reproduces most of the emission variation signatures observed by WINDII, but provides additional information on vertical advection and downward mixing of atomic oxygen. The study indicates that vertical advection associated with the tides and the large-scale circulation plays a major role in the airglow seasonal variations. The annual influence of the large-scale circulation appears more clearly in the mesosphere than in the lower thermosphere, while the semi-annual variation occurs only in the lower thermosphere.
机译:在大尺度普遍环流的背景下,研究了中高纬度地区中层和低层热层(MLT)的O(1S)和OH夜间气辉的季节气候。 1991年11月至1997年8月的多年风成像干涉仪(WINDII)卫星数据每月平均,以描绘不同海拔高度和当地时间的气辉体积发射率的季节性变化的全球模式。将这些观察结果与热层-电离层-中层电动力学通用循环模型(TIME-GCM)的模拟进行了比较。 WINDII和TIME-GCM的结果都显示了特定高度和当地时间O(1S)和OH气辉发射率的半年度和年度变化。 TIME-GCM再现了WINDII观察到的大多数排放变化特征,但提供了有关垂直对流和原子氧向下混合的更多信息。研究表明,与潮汐和大尺度环流有关的垂直对流在气辉季节变化中起主要作用。大尺度环流的年影响在中层比下热层更明显,而半年变化仅发生在下热层。

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