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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >The benefit of GPS zenith delay assimilation to high-resolution quantitative precipitation forecasts: A case-study from COPS IOP 9
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The benefit of GPS zenith delay assimilation to high-resolution quantitative precipitation forecasts: A case-study from COPS IOP 9

机译:GPS天顶延迟同化对高分辨率定量降水预报的好处:来自COPS IOP 9的案例研究

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摘要

The benefit of assimilating high spatial and temporal resolution Global Positioning System (GPS) zenith tropospheric delay (ZTD) observations within a high-resolution numerical weather prediction (NWP) system is evaluated during IOP 9 of the Convective and Orographically-induced Precipitation Study (COPS) campaign. In the framework of the international COPS field experiment, which took place from June to August 2007, a dense GPS network was deployed in the Vosges mountain region in eastern France andin the Black Forest region in southwestern Germany. GPS ZTD observations collected during the COPS field campaign, in addition to the European operational GPS data, are assimilated into the AROME/3D-Var system. We investigate the impact of assimilatingthese GPS ZTD observations on the forecast of convective systems that travelled over eastern France during the three days of COPS IOP 9 (18-20 July 2007). The results show a clear positive impact on short-range quantitative precipitation forecasts when GPS ZTD observations are assimilated. The impact is most important on 19 July 2007 (IOP 9b). The present study benefits from additional validation measurements collected during the COPS campaign. In particular we find that the assimilation of ZTD data induces changes in the low-to-middle tropospheric water vapour vertical structure that are consistent with water vapour measurements from radiosonde and airborne lidar. As most of the improvement is gained by assimilating GPS ZTD observations from the European operational GPS network, this study opens up encouraging horizons for the assimilation of GPS ZTD in new high-resolution operational NWP systems.
机译:对流和地形诱发降水研究(COPS)的IOP 9评估了在高分辨率数值天气预报(NWP)系统中吸收高时空分辨率全球定位系统(GPS)天顶对流层延迟(ZTD)观测的好处)广告系列。在2007年6月至2007年8月进行的国际COPS现场试验的框架内,在法国东部的孚日山脉地区和德国西南部的黑森林地区部署了密集的GPS网络。除了欧洲运行中的GPS数据外,在COPS野战期间收集的GPS ZTD观测也被同化为AROME / 3D-Var系统。我们调查了将这些GPS ZTD观测结果同化对COPS IOP 9(2007年7月18日至20日)三天期间穿越法国东部的对流系统的影响。当GPS ZTD观测值被同化后,结果显示对短程定量降水预测有明显的积极影响。影响最重要的是2007年7月19日(IOP 9b)。本研究受益于在COPS活动期间收集的其他验证度量。特别是,我们发现ZTD数据的同化会引起对流层低至中层水蒸气垂直结构的变化,这与探空仪和机载激光雷达的水蒸气测量结果一致。由于大多数改进是通过吸收来自欧洲运行GPS网络的GPS ZTD观测数据而获得的,因此本研究为在新型高分辨率NWP系统中吸收GPS ZTD开辟了令人鼓舞的前景。

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