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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >Quality control, error analysis, and impact assessment of FORMOSAT-3/COSMIC in numerical weather prediction
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Quality control, error analysis, and impact assessment of FORMOSAT-3/COSMIC in numerical weather prediction

机译:FORMOSAT-3 / COSMIC在数值天气预报中的质量控制,误差分析和影响评估

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Following several years of experimentation with the GPS radio occultation technique. the 6-satellite FORMOSAT-3/ COSMIC (F3C) mission was launched mid-2006 and has been collecting data since then. In this paper we present early findings of research performed at Meteo-France regarding the use of these data for assimilation in numerical weather prediction. Benefiting from the dense global coverage allowed by F3C refraction-induced observations. we first assess the quality of these data at four levels: bending angle. refractivity. refractivity lapse rate. and temperature. We compare them with calculations from Meteo-France numerical weather forecasts. Learning from these various levels of data we devise quality control procedures that rely on the refractivity lapse rate. Applying a recent methodology developed in data assimilation we calculate observation bending angle error variances for our assimilation system. Using these new quality control procedures and observation error estimates we run an assimilation and forecast experiment with Meteo-France's operational global 4DVAR data assimilation system used as a reference. Our results indicate a very clear positive impact of the assimilation of F3C bending angle data in the Southern hemisphere for the prediction of geopotential heights and winds. We also observe an improvement in wind forecast skill in the Northern hemisphere. albeit such an improvement is smaller than in the Southern hemisphere.
机译:经过几年的GPS无线电掩星技术实验。 6颗卫星的FORMOSAT-3 / COSMIC(F3C)任务于2006年中期发射,此后一直在收集数据。在本文中,我们介绍了法国气象局进行的有关将这些数据用于数字天气预报的同化研究的早期发现。受益于F3C折射诱发的观测所允许的密集的全球覆盖范围。我们首先从四个角度评估这些数据的质量:弯曲角度。折射率。折射率消失率。和温度。我们将它们与法国气象卫星数值天气预报的计算结果进行比较。从这些不同级别的数据中学习,我们设计了依赖于折射率下降率的质量控制程序。应用在数据同化中开发的最新方法,我们为同化系统计算观察到的弯曲角度误差方差。使用这些新的质量控制程序和观测误差估计,我们以法国气象局的全球4DVAR数据同化操作系统为参考进行了同化和预测实验。我们的结果表明,南半球F3C弯曲角数据的同化对于预测势能高度和风势具有非常明显的积极影响。我们还观察到北半球的天气预报技术有所提高。尽管这种改进比南半球要小。

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