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Using Satellite Observations for Air Quality Assessment with an Inverse Model System

机译:使用逆模型系统使用卫星观察空气质量评估

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The EURAD-IM chemistry transport model and its 4d-var inverse model extension is applied to one summer and one winter episode, in order to identify the benefit of tropospheric NO_2 column retrievals for estimating near-surface nitrogen dioxide concentrations. Initial values and emission rates are jointly optimised by assimilating tropospheric NO_2 data from the OMI, while European ground based observations are used for impact evaluation. Results show a moderate improvement of surface level nitrogen dioxide estimates during the summer episode, successfully sustained after the assimilation period through emission adjustments. In the winter case, the OMI data is of limited value due to lower boundary layer heights and thus smaller impact on emission rates.
机译:欧洲化学传输模型及其4D-VAR逆模型扩展应用于一个夏季和一个冬季集,以确定对流层NO_2列检索的损害,以估算近表面氮二氧化氮浓度。初始值和排放率通过同化来自OMI的对流层NO_2数据而联合优化,而欧洲地面的观察结果用于影响评估。结果表明,通过排放调整在同化期后成功维持的夏季集中的表面水平氮气二氧化氧化物估计的适度改善。在冬季情况下,由于较低的边界层高度,OMI数据具有有限的值,因此对发射率的影响较小。

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