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Evaluation of water vapour assimilation in the tropical upper troposphere and lower stratosphere by a chemical transport model

机译:用化学输运模型评价热带对流层和平流层下层的水蒸气同化。

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The present analysis deals with one of the most debated aspects of the studies on the upper troposphere/lower stratosphere (UTLS), namely the budget of water vapour (H2O) at the tropical tropopause. Within the French project "Multiscale water budget in the upper troposphere and lower stratosphere in the TROpics" (TRO-pico), a global-scale analysis has been set up based on space-borne observations, models and assimilation techniques. The MOCAGE-VALENTINA assimilation tool has been used to assimilate the Aura Microwave Limb Sounder (MLS) version 3.3 H2O measurements within the 316-5 hPa range from August 2011 to March 2013 with an assimilation window of 1 h. Diagnostics based on observations minus analysis and forecast are developed to assess the quality of the assimilated H2O fields. Comparison with an independent source of H2O measurements in the UTLS based on the space-borne Michelson Interferometer for Passive Atmospheric Sounding (MI-PAS) observations and with meteorological ARPEGE analyses is also shown. Sensitivity studies of the analysed fields have been performed by (1) considering periods when no MLS measurements are available and (2) using H2O data from another MLS version (4.2). The studies have been performed within three different spaces in time and space coincidences with MLS (hereafter referred to as MLS space) and MIPAS (MIPAS space) observations and with the model (model space) outputs and at three different levels: 121 hPa (upper troposphere), 100 hPa (tropopause) and 68 hPa (lower stratosphere) in January and February 2012. In the MLS space, the analyses behave consistently with the MLS observations from the upper troposphere to the lower stratosphere. In the model space, the analyses are wetter than the reference atmosphere as represented by ARPEGE and MLS in the upper troposphere (121 hPa) and around the tropopause (100 hPa), but are consistent with MLS and MIPAS in the lower stratosphere (68 hPa). In the MIPAS space, the sensitivity and the vertical resolution of the MIPAS data set at 121 and 100 hPa prevent assessment of the behaviour of the analyses at 121 and 100 hPa, particularly over intense convective areas as the South American, the African and the Maritime continents but, in the lower stratosphere (68 hPa), the analyses are very consistent with MIPAS. Sensitivity studies show the improvement on the H2O analyses in the tropical UTLS when assimilating space-borne measurements of better quality, particularly over the convective areas.
机译:本分析涉及对流层上层/平流层下层(UTLS)研究中争议最大的方面之一,即热带对流层顶水汽的预算(H2O)。在法国的项目“热带对流层高空平流层下多尺度水预算”(TRO-pico)中,已经建立了基于星载观测,模型和同化技术的全球规模分析。从2011年8月至2013年3月,在316-5 hPa范围内,MOCAGE-VALENTINA同化工具已用于同化Aura微波肢体测深仪(MLS)3.3 H2O测量值,同化窗口为1 h。开发了基于观测值减去分析和预测的诊断程序,以评估同化H2O场的质量。还显示了与基于星载迈克尔逊干涉仪进行无源大气探测(MI-PAS)观测的UTLS中独立的H2O测量源以及气象ARPEGE分析的比较。通过(1)考虑没有可用的MLS测量值的时间段,以及(2)使用来自另一个MLS版本(4.2)的H2O数据,进行了对已分析字段的敏感性研究。这些研究是在三个不同的时间和空间重合空间中进行的,分别与MLS(以下称为MLS空间)和MIPAS(MIPAS空间)观测以及模型(模型空间)输出以及三个不同级别进行了比较:121 hPa(上部)对流层),2012年1月和2012年2月的100 hPa(对流层顶)和68 hPa(低层平流层)。在MLS空间中,从高层对流层到平流层下层的分析与MLS观测结果一致。在模型空间中,与对流层上部的对流层(121 hPa)和对流层顶周围(100 hPa)的ARPEGE和MLS所代表的分析相比,其湿润程度较高,但与平流层下部(68 hPa)的MLS和MIPAS一致)。在MIPAS空间中,在121和100 hPa处设置的MIPAS数据的敏感性和垂直分辨率妨碍了对在121和100 hPa处的分析行为的评估,尤其是在南美,非洲和海洋等强对流地区但在平流层下部(68 hPa),这些分析与MIPAS非常一致。敏感性研究表明,当吸收更好质量的星载测量值时,特别是在对流地区,对热带UTLS中H2O分析的改进。

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