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Integration of cloud top heights retrieved from FY-2 meteorological satellite, radiosonde, and ground-based millimeter wavelength cloud radar observations

机译:从FY-2气象卫星,探空仪和地面毫米波云雷达观测资料中获取的云顶高度的积分

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摘要

Cloud top height (CTH) is an important parameter monitored in atmospheric observations, which has a significant impact on weather prediction, climate models, and flight services. CTH is typically obtained via three ways, namely, satellite, radiosonde, and ground-based radar, with their corresponding strengths and weaknesses. Traditionally, many studies have focused on independent comparison and analysis of CTHs retrieved from different observations. The researches on how to improve the reliability of the CTH by integrating multiple cloud measurements are rare in the literature despite the significance of this strategy to practical meteorological forecast and disaster prevention improvement. An integration technique of different CTHs retrieved from Fengyun 2 (FY-2) meteorological satellite, radiosonde, and ground-based millimeter wavelength cloud radar observations by using Bayesian decision theory is proposed in this study. A dataset is collected in Beijing, China for 12 months from June 2015 to May 2016 to validate the integration effect. Experimental results show that the integration observations improve the accuracy of single observations. Integration observations are more closely correlated with "true" CTH observations than the single observations. These all show the effectiveness of the proposed multiple source data integration strategy.
机译:云顶高度(CTH)是在大气观测中监测的重要参数,对天气预报,气候模型和飞行服务有重大影响。 CTH通常是通过三种方式获得的,即卫星,无线电探空仪和地面雷达,具有各自的优点和缺点。传统上,许多研究集中于独立比较和分析从不同观察值中检索到的CTH。尽管该策略对实际气象预报和防灾改善具有重要意义,但关于通过整合多个云测量来提高CTH可靠性的研究很少见。本研究提出了一种利用贝叶斯决策理论从风云二号(FY-2)气象卫星,探空仪和地面毫米波云雷达观测资料中获取的不同CTHs的整合技术。从2015年6月到2016年5月在中国北京收集了12个月的数据集以验证整合效果。实验结果表明,积分观测可以提高单观测的准确性。整合观测与“真实” CTH观测比单个观测更紧密相关。这些都表明了所提出的多源数据集成策略的有效性。

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