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The use of GNSS zenith total delays in operational AROME/Hungary 3D-Var over a central European domain

机译:在欧洲中部地区使用AROME / Hungary 3D-Var的GNSS天顶总延迟

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The delay of satellite signals broadcasted by Global Navigation Satellite System (GNSS) provides unique atmospheric observations which endorse numerical weather prediction from global to limited-area models. Due to the possibility of its frequent and near-real-time estimation, the zenith total delays (ZTDs) are valuable information for any state-of-the-art data assimilation system. This article introduces the data assimilation of ZTDs in a Hungarian numerical weather prediction system, which was carried out by taking into account observations from central European GNSS analysis and processing centres. The importance of ZTD observations is described and shown by a diagnostic tool in the 3-hourly updated 3D-Var assimilation scheme. Furthermore, observing system experiments are done to evaluate the impact of GNSS ZTDs on mesoscale limited-area forecasts. The results of the use of GNSS ZTDs showed a clear added value to improve screen-level temperature and humidity forecasts when the bias is accurately estimated and corrected in the data assimilation scheme. The importance of variational, i.e. adaptive bias correction, is highlighted by verification scores compared to static bias correction. Moreover, this paper reviews the quality control of GNSS ground-based stations inside the central European domain, the calculation of optimal thinning distance and the preparation of the two above-mentioned bias correction methods. Finally, conclusions are drawn on different settings of the forecast and analysis experiments with a brief future outlook.
机译:全球导航卫星系统(GNSS)广播的卫星信号的延迟提供了独特的大气观测结果,这些观测结果支持了从全球到有限区域模型的数值天气预报。由于可能进行频繁且接近实时的估算,因此天顶总延迟(ZTD)对于任何最新的数据同化系统都是有价值的信息。本文介绍了匈牙利数值天气预报系统中ZTD的数据同化,它是通过考虑来自中欧GNSS分析和处理中心的观测进行的。在3小时一次更新的3D-Var同化方案中,诊断工具描述并显示了ZTD观测的重要性。此外,进行了观测系统实验,以评估GNSS ZTD对中尺度有限区域预报的影响。使用GNSS ZTD的结果显示出明显的附加值,可以在数据同化方案中准确估算和校正偏差时改善屏幕水平的温度和湿度预报。与静态偏差校正相比,验证分数突出显示了变化(即自适应偏差校正)的重要性。此外,本文还对中欧地区GNSS地面站的质量控制,最佳稀疏距离的计算以及上述两种偏差校正方法的制备进行了回顾。最后,得出对预测和分析实验的不同设置的结论,并具有简短的未来展望。

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