首页> 外文期刊>Annales Geophysicae >Large-scale gravity wave perturbations in the mesopause region above Northern Hemisphere midlatitudes during autumnal equinox: a joint study by the USU Na lidar and Whole Atmosphere Community Climate Model
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Large-scale gravity wave perturbations in the mesopause region above Northern Hemisphere midlatitudes during autumnal equinox: a joint study by the USU Na lidar and Whole Atmosphere Community Climate Model

机译:秋季春分期间北半球中纬度以上中层顶地区的大规模重力波扰动:美国大学激光雷达和整个大气群落气候模型的联合研究

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To investigate gravity wave??(GW) perturbations in the midlatitude mesopause region during boreal equinox, 433a?ˉh of continuous Na lidar full diurnal cycle temperature measurements in September between 2011 and 2015 are utilized to derive the monthly profiles of GW-induced temperature variance, iT/ia?2sup2/sup, and the potential energy density??(PED). Operating at Utah State University (42?°a?ˉN, 112?°a?ˉW), these lidar measurements reveal severe GW dissipation near 90a?ˉkm, where both parameters drop to their minima (a??a??20a?ˉKsup2/sup and a??a?ˉ50a?ˉmsup2/supa?ˉssupa??2/sup, respectively). The study also shows that GWs with periods of 3–5a?ˉh dominate the midlatitude mesopause region during the summera??winter transition. To derive the precise temperature perturbations a new tide removal algorithm suitable for all ground-based observations is developed to de-trend the lidar temperature measurements and to isolate GW-induced perturbations. It removes the tidal perturbations completely and provides the most accurate GW perturbations for the ground-based observations. This algorithm is validated by comparing the true GW perturbations in the latest mesoscale-resolving Whole Atmosphere Community Climate Model (WACCM) with those derived from the WACCM local outputs by applying this newly developed tidal removal algorithm.
机译:为了调查北半月中纬度中绝经区的重力波(GW)扰动,利用2011年至2015年9月连续433天的Na激光雷达全日循环温度测量,得出了GW引起的温度变化的月廓线。 , T a?2 2 和势能密度??(PED)。这些激光雷达测量结果在犹他州立大学(42°a?N,112°a?W)处工作,显示90a?km附近的GW严重消散,两个参数均降至极小值(a ?? a ?? 20a?K) 2 和a?a?ˉ50a?mm 2 a?ˉs a ?? 2 )。研究还表明,在夏季-冬季过渡期间,周期为3-5a?h的GWs占据了中纬度更年期地区。为了获得精确的温度扰动,开发了一种适用于所有地面观测的新型潮汐去除算法,以消除激光雷达温度测量的趋势并隔离GW引起的扰动。它可以完全消除潮汐扰动,并为地面观测提供最准确的GW扰动。通过使用最新开发的潮汐去除算法,通过比较最新的中尺度解析整体大气社区气候模型(WACCM)中的真实GW扰动与WACCM本地输出推导的那些扰动,验证了该算法。

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