首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Comparison of Fast In situ Stratospheric Hygrometer (FISH) measurements of water vapor in the upper troposphere and lower stratosphere (UTLS) with ECMWF (re)analysis data
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Comparison of Fast In situ Stratospheric Hygrometer (FISH) measurements of water vapor in the upper troposphere and lower stratosphere (UTLS) with ECMWF (re)analysis data

机译:eCMWF(RE)分析数据对上层对流层和较低平流层(UTLS)水蒸气快速in in原位平流层湿度计(鱼)测量

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An evaluation of water vapor in the upper troposphere and lower stratosphere (UTLS) of the ERA-Interim, the global atmospheric reanalysis produced by the European Centre for Medium-Range Weather Forecasts (ECMWF), is presented. Water vapor measurements are derived from the Fast In situ Stratospheric Hygrometer (FISH) during a large set of airborne measurement campaigns from 2001 to 2011 in the tropics, midlatitudes and polar regions, covering isentropic layers from 300 to 400K (5–18km). The comparison shows around 87% of the reanalysis data are within a factor of 2 of the FISH water vapor measurements and around 30% have a nearly perfect agreement with an over- and underestimation lower than 10%. Nevertheless, strong over- and underestimations can occur both in the UT and LS, in particularly in the extratropical LS and in the tropical UT, where severe over- and underestimations up to 10 times can occur. The analysis data from the evolving ECMWF operational system is also evaluated, and the FISH measurements are divided into time periods representing different cycles of the Integrated Forecast System (IFS). The agreement with FISH improves over the time, in particular when comparing water vapor fields for time periods before 2004 and after 2010. It appears that influences of tropical tropospheric and extratropical UTLS processes, e.g., convective and quasi-isentropic exchange processes, are particularly challenging for the simulation of the UTLS water vapor distribution. Both the reanalysis and operational analysis data show the tendency of an overestimation of low water vapor mixing ratio (10ppmv) in the LS and underestimation of high water vapor mixing ratio (300ppmv) in the UT.
机译:展示了欧洲中期临时上临时上限和较低的平流层(UTLS)水蒸气评价,欧洲中际天气预报中心(ECMWF)产生的全球大气再分析。在热带,中层和极地地区的大量空中测量运动期间,水蒸气测量源自快速的原位平流层湿度计(鱼),中间体和极地区域,覆盖从300至400k(5-18km)的等熵层。比较表明,在鱼水蒸气测量的2倍的中,约87%的重新分析数据在2倍,大约30%的近似完美的一致性与低于10%的过度差异。然而,在UT和LS中,特别是在utlopical LS和热带UT中,可以发生强烈的过度和低估,其中可能发生严重的过度和低估10倍。还评估了来自不断发展的ECMWF操作系统的分析数据,并且将鱼测量分为表示集成预测系统(IFS)的不同周期的时间段。与鱼类的协议随着时间的推移而改善,特别是在比较2004年之前的时间段和2010年之前的时间段。似乎热带对流层和潜水尿液进程的影响,例如对流和准二等级交换过程尤其具有挑战性用于仿真UTLS水蒸气分布。重新分析和操作分析数据均显示出LS中低水蒸气混合比(10ppmv)的高估和低于UT中的高水蒸气混合比(300ppmv)的趋势。

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