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Quality assessment of the Ozone_cci Climate Research Data Package (release 2017): 2. Ground-based validation of nadir ozone profile data products

机译:Ozone_cci气候研究数据包(2017年发布)的质量评估:2.地面验证最低点臭氧剖面数据产品

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摘要

Atmospheric ozone plays a key role in air quality and the radiation budget of the Earth, both directly and through its chemical influence on other trace gases. Assessments of the atmospheric ozone distribution and associated climate change therefore demand accurate vertically-resolved ozone observations with both stratospheric and tropospheric sensitivity, both on the global and regional scales, and both in the long term and at shorter timescales. Such observations have been acquired by two series of European nadir-viewing ozone profilers, namely the scattered-light UV-visible spectrometers of the GOME family, launched regularly since 1995 (GOME, SCIAMACHY, OMI, GOME-2A/B, TROPOMI, and the upcoming Sentinel-5 series), and the thermal infrared emission sounders of the IASI type, launched regularly since 2006 (IASI on Metop platforms and the upcoming IASI-NG on Metop-SG). In particular, several Level-2 retrieved, Level-3 monthly gridded, and Level-4 assimilated nadir ozone profile data products have been improved and harmonised in the context of the ozone project of the European Space Agency’s Climate Change Initiative (ESA Ozone_cci). To verify their fitness-for-purpose, these ozone datasets must undergo a comprehensive quality assessment (QA), including (a) detailed identification of their geographical, vertical and temporal domains of validity, (b) quantification of their potential bias, noise and drift and their dependences on major influence quantities, and (c) assessment of the mutual consistency of data from different sounders. For this purpose we have applied to the Ozone_cci Climate Research Data Package (CRDP) released in 2017 the versatile QA/validation system Multi-TASTE which has been developed in the context of several heritage projects (ESA’s Multi-TASTE, EUMETSAT’s O3M-SAF, and the European Commission’s FP6 GEOmon and FP7 QA4ECV). This work, as the second in a series of four Ozone_cci validation papers, reports for the first time on data content studies, information content studies and ground-based validation for both the GOME- and IASI-type climate data records combined. The ground-based reference measurements have been provided by the Network for the Detection of Atmospheric Composition Change (NDACC), NASA’s Southern Hemisphere Additional Ozonesonde programme (SHADOZ), and other ozonesonde and lidar stations contributing to the World Meteorological Organisation’s Global Atmosphere Watch (WMO GAW). Dependence of the Ozone_cci data quality on major influence quantities – resulting in data screening suggestions to users – and perspectives for the Copernicus Sentinel missions are discussed.
机译:大气臭氧直接或通过其对其他微量气体的化学影响,在空气质量和地球辐射预算中起着关键作用。因此,对大气臭氧分布和相关的气候变化的评估需要在全球和区域范围内以及在长期和较短的时间范围内,对平流层和对流层敏感的,垂直分辨的臭氧进行精确观测。自1995年以来定期启动的两个系列的欧洲天底臭氧廓线仪(即GOME系列的散射光紫外可见光谱仪)已获得了这些观测值(GOME,SCIAMACHY,OMI,GOME-2A / B,TROPOMI和自2006年以来定期发布(即将发布的Sentinel-5系列)和IASI类型的红外热辐射探测器(Metop平台上的IASI和Metop-SG上的即将发布的IASI-NG)。尤其是,在欧洲航天局气候变化倡议(ESA Ozone_cci)的臭氧项目的背景下,已改进和协调了几种二级检索,三级每月网格化和四级同化的最低点臭氧剖面数据产品。为了验证其适用性,这些臭氧数据集必须经过全面的质量评估(QA),包括(a)详细确定其地理,垂直和时间有效性域,(b)量化其潜在偏差,噪声和漂移及其对主要影响量的依赖性,以及(c)评估来自不同测深仪的数据的相互一致性。为此,我们将2017年发布的Ozone_cci气候研究数据包(CRDP)应用了多功能QA /验证系统Multi-TASTE,该系统是在多个遗产项目(ESA的Multi-TASTE,EUMETSAT的O3M-SAF,以及欧盟委员会的FP6 GEOmon和FP7 QA4ECV)。这项工作是Ozone_cci四个验证文章系列中的第二篇,它首次报告了有关GOME和IASI类型气候数据记录的数据内容研究,信息内容研究和地面验证。地面成分变化探测网络(NDACC),NASA的南半球附加臭氧探空仪计划(SHADOZ)以及为世界气象组织的全球大气监测网(WMO)做出贡献的其他臭氧探空仪和激光雷达站提供了地面参考测量GAW)。 Ozone_cci数据质量对主要影响量的依赖性-导致向用户提供数据筛选建议-并讨论了哥白尼前哨任务的观点。

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