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Interannual dynamics in intensity of mesoscale hydroxyl nightglow variations over Almaty

机译:阿拉木图中尺度羟基夜光变化强度的年际动态

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The method of digital difference filters is applied to the data analysis of SATI observations of hydroxyl nightglow intensity and rotational temperature at altitudes 85–90 km over Almaty (43°03' N, 76°58' E), Kazakhstan, in 2010–2017. We examine seasonal and interannual variations in monthly average values and standard deviations of variations with periods 0.4–5.4 hrs, which may be associated with internal gravity waves in the mesopause region. The monthly average temperature near the mesopause has a maximum in winter and a minimum in June. The monthly average intensity has an additional maximum in June. Standard deviation of mesoscale rotational temperature variations and characteristics of internal gravity waves are maximum in spring and autumn. The spring maximum of mesoscale OH emission intensity variations is shifted to June. Interannual variations and multi-year trends of OH rotational temperature and emission intensity may differ in detail. This may be connected with seasonal and long-term variations in the complex system of the photochemical processes, which produce the OH nightglow.
机译:数字差异过滤器方法用于2010-2017年哈萨克斯坦阿拉木图(43°03'N,76°58'E)上海拔85-90 km的羟基夜辉强度和旋转温度的SATI观测数据分析。我们研究了月平均值的季节和年际变化以及0.4-5.4小时周期的标准偏差,这可能与更年期区域的内部重力波有关。中绝经期附近的每月平均温度在冬季最高,6月最低。六月的月平均强度有一个最大值。在春季和秋季,中尺度旋转温度变化的标准偏差和内部重力波的特征最大。中尺度OH排放强度变化的春季最大值移至6月。 OH旋转温度和排放强度的年际变化和多年趋势可能会有所不同。这可能与光化学过程复杂系统中的季节性和长期变化有关,这会产生OH夜光。

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