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Diagnosing horizontal and inter-channel observation error correlations for SEVIRI observations using observation-minus-background and observation-minus-analysis statistics

机译:使用观测负背景和观测负分析统计数据诊断SEVIRI观测的水平和通道间观测误差相关性

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摘要

It has been common practice in data assimilation to treat observation errors as uncorrelated; however, meteorological centres are beginning to use correlated inter-channel observation errors in their operational assimilation systems. In this work, we are the first to characterise inter-channel and spatial error correlations for Spinning Enhanced Visible and Infrared Imager (SEVIRI) observations that are assimilated into the Met Office high-resolution model. The errors are calculated using a diagnostic that calculates statistical averages of observation-minus-background and observation-minus-analysis residuals. This diagnostic is sensitive to the background and observation error statistics used in the assimilation, although, with careful interpretation of the results, it can still provide useful information. We find that the diagnosed SEVIRI error variances are as low as one-tenth of those currently used in the operational system. The water vapour channels have significantly correlated inter-channel errors, as do the surface channels. The surface channels have larger observation error variances and inter-channel correlations in coastal areas of the domain; this is the result of assimilating mixed pixel (land-sea) observations. The horizontal observation error correlations range between 30 km and 80 km, which is larger than the operational thinning distance of 24 km. We also find that estimates from the diagnostics are unaffected by biased observations, provided that the observation-minus-background and observation-minus-analysis residual means are subtracted.
机译:数据同化的惯例是将观察误差视为不相关。但是,气象中心开始在其操作同化系统中使用相关的通道间观测误差。在这项工作中,我们是第一个表征旋转增强型可见光和红外成像仪(SEVIRI)观测值的通道间和空间误差相关性的方法,这些观测值已被纳入Met Office高分辨率模型。使用诊断程序计算误差,该诊断程序计算观察值减去背景和观察值减去分析残差的统计平均值。该诊断对同化过程中使用的背景和观察误差统计信息很敏感,尽管通过仔细解释结果,仍可以提供有用的信息。我们发现,诊断出的SEVIRI误差方差低至操作系统中当前使用的误差的十分之一。水蒸气通道与表面通道也具有显着相关的通道间误差。在该区域的沿海地区,地表通道具有较大的观测误差方差和通道间相关性;这是吸收混合像素(陆地-海洋)观测结果的结果。水平观测误差的相关性在30 km和80 km之间,这大于24 km的稀疏操作距离。我们还发现,只要减去观察减去背景和观察减去分析的剩余均值,就可以不受诊断结果的影响。

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