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Methanol from TES global observations: retrieval algorithm and seasonal and spatial variability

机译:来自TES的甲醇全球观测:检索算法和季节性和空间变异性

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We present a detailed description of the TES methanol (CH3OH) retrieval algorithm, along with initial global results showing the seasonal and spatial distribution of methanol in the lower troposphere. The full development of the TES methanol retrieval is described, including microwindow selection, error analysis, and the utilization of a priori and initial guess information provided by the GEOS-Chem chemical transport model. Retrieval simulations and a sensitivity analysis using the developed retrieval strategy show that TES: (i) generally provides less than 1.0 piece of information, (ii) is sensitive in the lower troposphere with peak sensitivity typically occurring between ~900–700 hPa (~1–3 km) at a vertical resolution of ~5 km, (iii) has a limit of detectability between 0.5 and 1.0 ppbv Representative Volume Mixing Ratio (RVMR) depending on the atmospheric conditions, corresponding roughly to a profile with a maximum concentration of at least 1 to 2 ppbv, and (iv) in a simulation environment has a mean bias of 0.16 ppbv with a standard deviation of 0.34 ppbv. Applying the newly derived TES retrieval globally and comparing the results with corresponding GEOS-Chem output, we find generally consistent large-scale patterns between the two. However, TES often reveals higher methanol concentrations than simulated in the Northern Hemisphere spring, summer and fall. In the Southern Hemisphere, the TES methanol observations indicate a model overestimate over the bulk of South America from December through July, and a model underestimate during the biomass burning season.
机译:我们介绍了TES甲醇(CH3OH)检索算法的详细描述,以及初始全球结果,显示较低对流层甲醇的季节性和空间分布。描述了TES甲醇检索的全部开发,包括微波照相选择,误差分析和利用Geos-Chem化学传输模型提供的先验和初始猜测信息。使用开发的检索策略的检索模拟和灵敏度分析表明,TES:(i)通常提供少于1.0件信息,(ii)在较低的对流层中敏感,峰值灵敏度通常在〜900-700 HPA之间发生达到峰值敏感性(〜1 -3 km)在〜5km的垂直分辨率下,(iii)的垂直分辨率在0.5和1.0ppbv代表体积混合比(RVMR)之间的可检测性限制,这取决于大气条件,大致对应于具有最大浓度的轮廓在仿真环境中至少1至2个PPBV和(IV)的平均偏差为0.16ppbv,标准偏差为0.34 ppbv。在全球范围内应用新派生的TES检索并将结果与​​相应的Geos-Chem输出进行比较,我们在两者之间发现一致一致的大规模模式。然而,TES经常揭示比北半球春季,夏季和秋季的模拟更高的甲醇浓度。在南半球,则TES甲醇观测表明,生物质燃烧的季节在截至7月份的大宗南美从12模型的高估和低估模型。

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