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The regional European atmospheric transport inversion comparison, EUROCOM: first results on European-wide terrestrial carbon fluxes for the period 2006–2015

机译:区域欧洲大气运输反演比较,EUROCOM:首先是2006 - 2015年期间欧洲陆地碳通量的结果

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Atmospheric inversions have been used for the past two decades to derive large-scale constraints on the sources and sinks of CO2 into the atmosphere. The development of dense in situ surface observation networks, such as ICOS in Europe, enables in theory inversions at a resolution close to the country scale in Europe. This has led to the development of many regional inversion systems capable of assimilating these high-resolution data, in Europe and elsewhere. The EUROCOM (European atmospheric transport inversion comparison) project is a collaboration between seven European research institutes, which aims at producing a collective assessment of the net carbon flux between the terrestrial ecosystems and the atmosphere in Europe for the period 2006–2015. It aims in particular at investigating the capacity of the inversions to deliver consistent flux estimates from the country scale up to the continental scale. The project participants were provided with a common database of in situ-observed CO2 concentrations (including the observation sites that are now part of the ICOS network) and were tasked with providing their best estimate of the net terrestrial carbon flux for that period, and for a large domain covering the entire European Union. The inversion systems differ by the transport model, the inversion approach, and the choice of observation and prior constraints, enabling us to widely explore the space of uncertainties. This paper describes the intercomparison protocol and the participating systems, and it presents the first results from a reference set of inversions, at the continental scale and in four large regions. At the continental scale, the regional inversions support the assumption that European ecosystems are a relatively small sink (-0.21±0.2PgCyr?1). We find that the convergence of the regional inversions at this scale is not better than that obtained in state-of-the-art global inversions. However, more robust results are obtained for sub-regions within Europe, and in these areas with dense observational coverage, the objective of delivering robust country-scale flux estimates appears achievable in the near future.
机译:过去二十年来使用大气反转,从而导致源的大规模约束,并将二氧化碳汇入大气层。在欧洲的ICOS等原位表面观测网络中的发展在理论上,在欧洲较近国家规模的分辨率的理论上实现。这导致了许多能够在欧洲和其他地方吸收这些高分辨率数据的区域反演系统的发展。 EUROCOM(欧洲大气运输反演比较)项目是七个欧洲研究机构之间的合作,旨在为2006 - 2015年期间产生陆地生态系统与欧洲气氛之间的净碳通量的集体评估。它特别旨在调查逆转到国家规模达到大陆规模的一致性助焊剂估计的能力。项目参与者被提供有一个常见的惯例数据库,以便观察到的二氧化碳浓度(包括现在是ICOS网络的一部分的观察网站),并且任务是为该期间提供最佳估计净陆地碳通量,以及一个覆盖整个欧盟的大型域名。反转系统因传输模型,反转方法和观察和事先约束的选择而异,使我们能够广泛探索不确定性的空间。本文介绍了离心一体协议和参与系统,它介绍了在大陆尺度和四个大区域的参考逆转集中的第一个结果。在大陆规模,区域反转支持欧洲生态系统是一个相对较小的水槽(-0.21±0.2pgcyr?1)的假设。我们发现,此规模的区域逆势的趋同并不优于最先进的全球反转中获得的融合。然而,在欧洲内部区域获得更强大的结果,在这些区域具有密集的观察覆盖范围内,在不久的将来可以实现提供强大的国家级磁通估计的目标。
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