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Evaluation of ozone and water vapor fields from the ECMWF reanalysis ERA-40 during 1991–1999 in comparison with UARS satellite and MOZAIC aircraft observations

机译:与UARS卫星和MOZAIC飞机观测结果进行比较,对1991-1999年期间ECMWF再分析ERA-40中的臭氧和水蒸气场进行评估

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摘要

The European Centre for Medium-Range Weather Forecasts (ECMWF) 40-year Re-analysis (ERA-40) ozone and water vapor reanalysis fields during the 1990s have been compared with independent satellite data from the Halogen Occultation Experiment (HALOE) and Microwave Limb Sounder (MLS) instruments on board the Upper Atmosphere Research Satellite (UARS). In addition, ERA-40 has been compared with aircraft data from the Measurements of Ozone and Water Vapour by Airbus In-Service Aircraft (MOZAIC) program. Overall, in comparison with the values derived from the independent observations, the upper stratosphere in ERA-40 has about 5–10% more ozone and 15–20% less water vapor. This dry bias in the reanalysis appears to be global and extends into the middle stratosphere down to 40 hPa. Most of the discrepancies and seasonal variations between ERA-40 and the independent observations occur within the upper troposphere over the tropics and the lower stratosphere over the high latitudes. ERA-40 reproduces a weaker Antarctic ozone hole, and of less vertical extent, than the independent observations; values in the ozone maximum in the tropical stratosphere are lower for the reanalysis. ERA-40 mixing ratios of water vapor are considerably larger than those for MOZAIC, typically by 20% in the tropical upper troposphere, and they may exceed 60% in the lower stratosphere over high latitudes. The results imply that the Brewer-Dobson circulation in the ECMWF reanalysis system is too fast, as is also evidenced by deficiencies in the way ERA-40 reproduces the water vapor “tape recorder” signal in the tropical stratosphere. Finally, the paper examines the biases and their temporal variation during the 1990s in the way ERA-40 compares to the independent observations. We also discuss how the evaluation results depend on the instrument used, as well as on the version of the data.
机译:已将欧洲中程天气预报中心(ECMWF)在1990年代40年的再分析(ERA-40)臭氧和水蒸气再分析领域与卤素掩星实验(HALOE)和微波肢体的独立卫星数据进行了比较上层大气研究卫星(UARS)上的探测仪(MLS)仪器。此外,还将ERA-40与空中客车在役飞机(MOZAIC)程序测量的臭氧和水蒸气测量中的飞机数据进行了比较。总体而言,与独立观测得出的值相比,ERA-40的高空平流层臭氧含量高5-10%,水蒸气含量低15-20%。重新分析中的这种干偏差似乎是全局性的,并延伸至平流层中部,低至40 hPa。 ERA-40和独立观测值之间的大多数差异和季节性变化都发生在热带上空的对流层和高纬度下层的平流层中。与独立观测相比,ERA-40产生的南极臭氧空洞较弱,垂直范围较小。热带平流层中最大臭氧含量的值较低,需要重新分析。 ERA-40的水蒸气混合比比MOZAIC的大得多,通常在热带对流层高20%,在高纬度低层平流层可能超过60%。结果表明ECMWF再分析系统中的Brewer-Dobson循环太快,这也由ERA-40在热带平流层中再现水汽“磁带记录器”信号的方式不足证明了这一点。最后,本文以ERA-40与独立观测结果进行比较的方式研究了1990年代的偏差及其随时间的变化。我们还将讨论评估结果如何取决于所使用的工具以及数据的版本。

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