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A tropospheric chemistry reanalysis for the years 2005–2012 based on an assimilation of OMI, MLS, TES, and MOPITT satellite data

机译:基于对OMI,MLS,TES和MOPITT卫星数据的同化,对2005-2012年的对流层化学进行了重新分析

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We present the results from an 8-year tropospheric chemistry reanalysis for the period 2005–2012 obtained by assimilating multiple data sets from the OMI, MLS, TES, and MOPITT satellite instruments. The reanalysis calculation was conducted using a global chemical transport model and an ensemble Kalman filter technique that simultaneously optimises the chemical concentrations of various species and emissions of several precursors. The optimisation of both the concentration and the emission fields is an efficient method to correct the entire tropospheric profile and its year-to-year variations, and to adjust various tracers chemically linked to the species assimilated. Comparisons against independent aircraft, satellite, and ozonesonde observations demonstrate the quality of the analysed O3, NO2, and CO concentrations on regional and global scales and for both seasonal and year-to-year variations from the lower troposphere to the lower stratosphere. The data assimilation statistics imply persistent reduction of model error and improved representation of emission variability, but they also show that discontinuities in the availability of the measurements lead to a degradation of the reanalysis. The decrease in the number of assimilated measurements increased the ozonesonde-minus-analysis difference after 2010 and caused spurious variations in the estimated emissions. The Northern/Southern Hemisphere OH ratio was modified considerably due to the multiple-species assimilation and became closer to an observational estimate, which played an important role in propagating observational information among various chemical fields and affected the emission estimates. The consistent concentration and emission products provide unique information on year-to-year variations in the atmospheric environment.
机译:我们介绍了通过对OMI,MLS,TES和MOPITT卫星仪器的多个数据集进行同化获得的2005-2012年对流层化学8年再分析结果。重新分析计算是使用全局化学迁移模型和集成卡尔曼滤波技术进行的,该技术同时优化了各种物种的化学浓度和几种前体的排放。浓度和发射场的优化是纠正整个对流层剖面及其逐年变化以及调整与同化物种化学联系的各种示踪剂的有效方法。与独立飞机,卫星和臭氧探空仪观测值的比较表明,区域和全球范围以及季节和年度的分析O 3 ,NO 2 和CO浓度的质量从对流层下部到平流层下部的逐年变化。数据同化统计数据暗示着模型误差的持续减少和排放变异性的改进表示,但它们还表明,测量可用性的不连续性导致重新分析的性能下降。 2010年之后,同化测量数量的减少增加了臭氧探空仪-负分析的差异,并造成了估算排放的虚假变化。由于多种物种的同化作用,北半球/南半球的OH比发生了很大的变化,并变得更接近于观测值,这在各种化学领域之间传播观测信息和影响排放量估算中发挥了重要作用。一致的浓度和排放产品可提供有关大气环境逐年变化的独特信息。

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