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TROPOMI/S5P total ozone column data: global ground-based validation and consistency with other satellite missions

机译:Tropomi / S5P总臭氧列数据:全球基于地面的验证和与其他卫星任务的一致性

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In October 2017, the Sentinel-5 Precursor (S5P) mission was launched, carrying the TROPOspheric Monitoring Instrument (TROPOMI), which provides a daily global coverage at a spatial resolution as high as 7 km × 3.5 km and is expected to extend the European atmospheric composition record initiated with GOME/ERS-2 in 1995, enhancing our scientific knowledge of atmospheric processes with its unprecedented spatial resolution. Due to the ongoing need to understand and monitor the recovery of the ozone layer, as well as the evolution of tropospheric pollution, total ozone remains one of the leading species of interest during this mission. In this work, the TROPOMI near real time (NRTI) and offline (OFFL) total ozone column (TOC) products are presented and compared to daily ground-based quality-assured Brewer and Dobson TOC measurements deposited in the World Ozone and Ultraviolet Radiation Data Centre (WOUDC). Additional comparisons to individual Brewer measurements from the Canadian Brewer Network and the European Brewer Network (Eubrewnet) are performed. Furthermore, twilight zenith-sky measurements obtained with ZSL-DOAS (Zenith Scattered Light Differential Optical Absorption Spectroscopy) instruments, which form part of the SAOZ network (Système d'Analyse par Observation Zénitale), are used for the validation. The quality of the TROPOMI TOC data is evaluated in terms of the influence of location, solar zenith angle, viewing angle, season, effective temperature, surface albedo and clouds. For this purpose, globally distributed ground-based measurements have been utilized as the background truth. The overall statistical analysis of the global comparison shows that the mean bias and the mean standard deviation of the percentage difference between TROPOMI and ground-based TOC is within 0 –1.5 % and 2.5 %–4.5 %, respectively. The mean bias that results from the comparisons is well within the S5P product requirements, while the mean standard deviation is very close to those limits, especially considering that the statistics shown here originate both from the satellite and the ground-based measurements. Additionally, the TROPOMI OFFL and NRTI products are evaluated against already known spaceborne sensors, namely, the Ozone Mapping Profiler Suite, on board the Suomi National Polar-orbiting Partnership (OMPS/Suomi-NPP), NASA v2 TOCs, and the Global Ozone Monitoring Experiment?2 (GOME-2), on board the Metop-A (GOME-2/Metop-A) and Metop-B (GOME-2/Metop-B) satellites. This analysis shows a very good agreement for both TROPOMI products with well-established instruments, with the absolute differences in mean bias and mean standard deviation being below +0.7 % and 1 %, respectively. These results assure the scientific community of the good quality of the TROPOMI TOC products during its first year of operation and enhance the already prevalent expectation that TROPOMI/S5P will play a very significant role in the continuity of ozone monitoring from space.
机译:2017年10月,发布了Sentinel-5前体(S5P)任务,携带了对流层监测仪(Tropomi),其在空间分辨率下提供每日全球覆盖率,高达7公里×3.5公里,预计将延长欧洲1995年的Gome / ERS-2发起的大气成分记录,提高了我们的科学知识,具有前所未有的空间分辨率。由于持续需要了解和监测臭氧层的恢复,以及对流层污染的演变,总臭氧仍然是在此任务期间的主要兴趣物种之一。在这项工作中,返回实时(NRTI)和离线(OFFL)总臭氧色谱柱(TOC)产品的Tropomi,并与每日地面的质量保证的啤酒花和Dob​​son TOC测量相比,沉积在世界臭氧和紫外线辐射数据中中心(Woudc)。执行加拿大啤酒网络和欧洲啤酒网络(EUBREWNET)的单个啤酒员测量的额外比较。此外,用ZSL-DOA(Zenith散射光差分光学吸收光谱)获得的暮光之城Zenith-Sky测量,该仪器形成了Saoz网络的一部分(SystèmeD'分析Zénitale)用于验证。在地理位置,太阳能天性角度,视角,季节,有效温度,表面反照和云的影响方面评估了Trobomi Toc数据的质量。为此目的,全局分布的地基测量已被用作背景事实。全局比较的总体统计分析表明,Tropomi和地面TOC之间百分比差异的平均偏差和平均标准偏差分别在0-1.5%和2.5%-4.5%之内。来自比较的平均偏差在S5P产品要求中很好,而平均标准偏差非常接近那些限制,特别是考虑到这里所示的统计数据来自卫星和基于地基测量。此外,Tropomi Offl和NRTI产品是针对已知的星载传感器评估的,即臭氧映射分布器套件,船上的船舶国家极性轨道伙伴关系(OMPS / Suomi-NPP),NASA V2 TOC和全球臭氧监测实验?2(GOME-2),在METOP-A(GOME-2 / MEDOP-A)和MetoP-B(Gome-2 / Metop-B)卫星上。该分析表明,具有良好良好的仪器的Tropomi产品非常良好,平均偏差的绝对差异分别低于+ 0.7%和1%。这些结果向科学界保证了Tropomi TOC产品的良好质量,在其第一年的运作期间,提升了Tropomi / S5P在臭氧监测的连续性中发挥着非常重要的作用。

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