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Radiative and temperature effects of experimental cloud-radiation interaction scheme of COSMO model

机译:COSMO模型实验云辐射相互作用方案的辐射和温度效应

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We analyzed macrophysical characteristics of clouds and their radiative effects using COSMO mesoscale model and four German CLOUDNET sites. The study was performed for selected days with optically thick cloudiness, which relates to the period from April to October 2018. The short-term forecasts with only 3-hour time interval permit to evaluate only cloud microphysics effect on global irradiance at ground. The comparisons of liquid cloud water content (QC) and ice cloud content (QI) between measurements and modelling are discussed. We showed that the CLOUDRAD experimental cloud radiation interaction scheme provides a better agreement in global irradiance with observations than that from the default scheme.
机译:我们使用COSMO Mescle模型和四个德国CloudNet站点分析了云的宏观物理特征及其辐射效应。该研究是针对光学厚云的选定日进行的,涉及2018年4月至10月的期间。短期预测只有3小时的时间间隔允许评估云微软对地面全球辐照区的云微疗影响。讨论了测量和建模之间的液体云含水量(QC)和冰云含量(QI)的比较。我们认为,Cloudrad实验云辐射相互作用方案在全球辐照方面提供了比默认计划的观察更好。

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