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Tidal effects on stratospheric temperature series derived from successive advanced microwave sounding units

机译:连续先进的微波探测单元对平流层温度序列的潮汐影响

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摘要

Stratospheric temperature series derived from the Advanced Microwave Sounding Unit (AMSU) on board successive NOAA satellites reveal, during periods of overlap, some bias and drifts. Part of the reason for these discrepancies could be atmospheric tides as the orbits of these satellites drifted, inducing large changes in the actual times of measurement. NOAA 15 and 16, which exhibit a long period of overlap, allow deriving diurnal tides that can correct such temperature drifts. The characteristics of the derived diurnal tides during summer periods is in good agreement with those calculated with the Global Scale Wave Model, indicating that most of the observed drifts are likely due to the atmospheric tides. Cooling can be biased by a factor of 2, if times of measurement are not considered. When diurnal tides are considered, trends derived from temperature lidar series are in good agreement with AMSU series. Future adjustments of temperature time series based on successive AMSU instruments will require considering corrections associated with the local times of measurement.
机译:从连续的NOAA卫星上的高级微波探测装置(AMSU)得出的平流层温度序列显示,在重叠期间,会出现一些偏差和漂移。这些差异的部分原因可能是由于这些卫星的轨道漂移而引起的大气潮,导致实际测量时间发生了巨大变化。 NOAA 15和NOAA 16表现出长时间的重叠,因此可以推导出昼夜潮汐,以纠正这种温度漂移。夏季导出的昼夜潮汐的特征与用全球尺度波浪模型计算得出的日潮的特征非常吻合,表明大多数观测到的漂移可能是由于大气潮汐引起的。如果不考虑测量时间,则冷却的偏差可以为2倍。考虑到日潮,从温度激光雷达系列得出的趋势与AMSU系列吻合良好。基于连续的AMSU仪器对温度时间序列的未来调整将需要考虑与当地测量时间相关的校正。

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