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Mesospheric temperatures and sodium properties measured with the ALOMAR Na lidar compared with WACCM

机译:使用ALOMAR Na激光雷达和WACCM测得的中层温度和钠性质

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摘要

We present a comparison of the temperature and sodium layer properties observed by the ALOMAR Na lidar (69.3 degrees N, 16.0 degrees E) and simulated by the Whole Atmosphere Community Climate Model with specified dynamics and implemented sodium chemistry (WACCM-Na). To constrain the meteorological fields below 60 km, we use MERRA and GEOS-5. For the years 2008 to 2012, we analyse daily averages of temperature between 805 km and 101.5 km altitude, and of the Na layer's peak height, peak density, and centroid height. Both model runs are able to reproduce the pronounced seasonal cycle of Na number density and temperature at high latitudes very well. Especially between 86.5 km and 95.5 km, the measured and simulated temperatures agree very well. The lidar measurements confirm the model predictions that the January 2012 stratospheric warming led to large variation in temperature and Na density. The correlation coefficient between Na number density and temperature is positive for almost all altitudes in the lidar data, but not in the simulations. On average, the centroid height and peak height measured by lidar is about 2 km(-3) km higher than simulated by WACCM-Na. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:我们对ALOMAR Na激光雷达(北纬69.3度,东经16.0度)观察到的温度和钠层性质进行比较,并通过指定大气动力学和已实施钠化学性质(WACCM-Na)的整个大气群落气候模型进行了模拟。为了限制60 km以下的气象场,我们使用MERRA和GEOS-5。在2008年至2012年期间,我们分析了海拔805 km和101.5 km之间的每日平均温度以及Na层的峰高,峰密度和质心高度。两个模型运行都能够很好地再现高纬度Na的密度和温度的明显季节性周期。特别是在86.5 km至95.5 km之间,实测温度和模拟温度非常吻合。激光雷达的测量结果证实了模型预测,即2012年1月的平流层变暖导致温度和Na密度变化很大。 Na数密度与温度之间的相关系数对于激光雷达数据中的几乎所有高度都是正的,但在模拟中却不是。平均而言,激光雷达测得的质心高度和峰高比WACCM-Na模拟的高约2 km(-3)km。 (C)2015作者。由Elsevier Ltd.发布

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