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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Interannual variations of middle atmospheric temperature as measured by the JPL lidar at Mauna Loa Observatory, Hawaii (19.5°N, 155.6°W)
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Interannual variations of middle atmospheric temperature as measured by the JPL lidar at Mauna Loa Observatory, Hawaii (19.5°N, 155.6°W)

机译:中层大气的年际变化温度测量的喷气推进实验室在莫纳激光雷达贷款天文台,夏威夷(19.5°N, 155.6°W)

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摘要

The Jet Propulsion Laboratory Rayleigh-Raman lidar at Mauna Loa Observatory (MLO), Hawaii (19.5°N, 155.6°W) has been measuring atmospheric temperature vertical profiles routinely since 1993. Linear regression analysis was applied to the 13.5-yearlong (January 1994 to June 2007) deseasonalized monthly mean lidar temperature time series for each 1-km altitude bin between 15 and 85 km. The regression analysis included components representing the Quasi-Biennial Oscillation (QBO), El Ni?o-Southern Oscillation (ENSO), and the 11-year solar cycle. Where overlapping was possible, the results were compared to those obtained from the twice-daily National Weather Service (NWS) radiosonde profiles at Hilo (5–30 km) located 60 km east-north-east of the lidar site, and the four-times-daily temperature analysis of the European Centre for Medium Range Weather Forecast (ECMWF). The analysis revealed the dominance of the QBO (1–3 K) in the stratosphere and mesosphere, and a strong winter signature of ENSO in the troposphere and lowermost stratosphere (~1.5 K/MEI). Additionally, and for the first time, a statistically significant signature of ENSO was observed in the mesosphere, consistent with the findings of recent model simulations. The annual mean response to the solar cycle shows two statistically significant maxima of ~1.3 K/100 F10.7 units at 35 and 55 km. The temperature responses to QBO, ENSO, and solar cycle are all maximized in winter. Comparisons with the global ECMWF temperature analysis clearly showed that the middle atmosphere above MLO is under a subtropical/extratropical regime, i.e., generally out-of-phase with that in the equatorial regions, and synchronized to the northern hemisphere winter/spring.
机译:喷气推进实验室Rayleigh-Raman激光雷达夏威夷莫纳罗亚山天文台(枣疯病(19.5°N,155.6°W)测量大气温度垂直配置文件通常1993. 13.5一年(1994年1月至2007年6月)延长的销售季节每月平均温度激光雷达时间序列为每1公里高度本15之间和85公里。组件代表Quasi-Biennial振荡(QBO) El倪?(ENSO), 11年的太阳活动周期。重叠是可能的结果相比那些从每天获得国家气象局(NWS)无线电探空仪配置文件在小矿脉(30公里)位于60公里激光雷达站点,东北东和每天四次温度的分析欧洲中期天气预报中心(ECMWF)。在平流层QBO (1 - 3 K)中间层,以及强烈的冬季ENSO的签名在对流层和平流层最低(~ 1.5 K /梅)。的显著特征ENSO观察在中间层,一致最近的模型模拟的结果。太阳活动周期显示年度平均响应两个显著~ 1.3的最大值K / 100 F10.7单位35岁和55公里。温度对QBO的反应、ENSO和太阳能周期都是在冬天最大化。随着全球ECMWF温度分析清楚地表明,中间上面的大气枣疯病是亚热带、温带的政权下,也就是说,一般的价格不同相的赤道地区,和同步北半球冬季/春天。

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