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首页> 外文期刊>Atmospheric Measurement Techniques >Improvements to the OMI Osub2/sub–Osub2/sub operational cloud algorithm and comparisons with ground-based radar–lidar observations
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Improvements to the OMI Osub2/sub–Osub2/sub operational cloud algorithm and comparisons with ground-based radar–lidar observations

机译:OMI O 2 –O 2 操作云算法的改进以及与地面雷达雷达观测的比较

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The OMI (Ozone Monitoring Instrument on board NASA's Earth Observing System (EOS) Aura satellite) OMCLDO2 cloud product supports trace gas retrievals of for example ozone and nitrogen dioxide. The OMCLDO2 algorithm derives the effective cloud fraction and effective cloud pressure using a DOAS (differential optical absorption spectroscopy) fit of the Osub2/sub–Osub2/sub absorption feature around 477?nm. A new version?of the OMI OMCLDO2 cloud product is presented that contains several improvements, of which the introduction of a temperature correction on the Osub2/sub–Osub2/sub slant columns and the updated look-up tables have the largest impact. Whereas the differences in the effective cloud fraction are on average limited to 0.01, the differences of the effective cloud pressure can be up to 200?hPa, especially at cloud fractions below 0.3. As expected, the temperature correction depends on latitude and season. The updated look-up tables have a systematic effect on the cloud pressure at low cloud fractions. The improvements at low cloud fractions are very important for the retrieval of trace gases in the lower troposphere, for example for nitrogen dioxide and formaldehyde. The cloud pressure retrievals of the improved algorithm are compared with ground-based radar–lidar observations for three sites at mid-latitudes. For low clouds that have a limited vertical extent the comparison yields good agreement. For higher clouds, which are vertically extensive and often contain several layers, the satellite retrievals give a lower cloud height. For high clouds, mixed results are obtained.
机译:OMI(NASA的地球观测系统(EOS)Aura卫星上的臭氧监测仪器)OMCLDO2云产品支持微量气体的回收,例如臭氧和二氧化氮。 OMCLDO2算法使用477?nm附近O 2 –O 2 吸收特征的DOAS(差分光学吸收光谱)拟合得出有效云量和有效云压。提出了OMI OMCLDO2云产品的新版本,其中包含多项改进,其中包括在O 2 –O 2 倾斜列和更新的查询表影响最大。有效云分数的差异平均限制为0.01,而有效云压力的差异可以高达200?hPa,尤其是在云分数低于0.3的情况下。不出所料,温度校正取决于纬度和季节。更新后的查询表对低云分数下的云压力有系统的影响。低云含量的改善对于低层对流层中痕量气体的回收非常重要,例如二氧化氮和甲醛。将改进算法的云压检索结果与中纬度三个地点的地面雷达-激光雷达观测结果进行比较。对于垂直范围有限的低云,比较可得出很好的一致性。对于垂直扩展且通常包含几层的更高的云层,卫星取回可得出较低的云层高度。对于高云,获得混合结果。

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