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Effect of clouds on UV irradiance: As estimated from cloud amount, cloud type, precipitation, global radiation and sunshine duration

机译:云对紫外线辐射的影响:根据云量,云类型,降水,全球辐射和日照持续时间估算

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Ten years of measurements of UV irradiance, monitored by the Robertson-Berger (RB) meter in Norrkoping, 58.58 degrees N, 16.15 degrees E, Sweden, have been combined with concurrent synoptic cloud observations, measurements of sunshine duration, and global radiation to establish the relative influence of clouds on UV irradiance. It is shown that the cloud effect for UV wavelengths is less than for the whole solar spectrum (global radiation). Relations retrieved for global radiation may be used by correcting for the differences. High-level clouds are more transparent than low- and medium-level clouds. As expected, it was found that precipitating clouds in general are more opaque than nonprecipitating clouds. If there is any solar elevation dependency in the effect of clouds, it is small. Using only total cloud amount as parameter to model, the cloud effect on UV irradiance will give a substantial uncertainty, which can be decreased considerably using cloud type and/or information on precipitation conditions. It has also been shown that sunshine duration can be used in a similar way as cloud covet. [References: 13]
机译:由位于瑞典北纬58.58度,东经16.15度的诺尔雪平的Robertson-Berger(RB)测量仪监测的十年紫外线辐照度测量与同时进行的天气观测,日照持续时间和全球辐射观测相结合,以建立云对紫外线辐射的相对影响。结果表明,紫外线波长的云效应小于整个太阳光谱(全球辐射)的云效应。可以通过校正差异来使用针对全局辐射检索的关系。高级云比低级和中级云更透明。如预期的那样,发现通常沉淀云比不沉淀云更不透明。如果云层的影响与太阳高度有关,则它很小。仅使用总云量作为参数进行建模,云对紫外线辐照度的影响将产生很大的不确定性,使用云类型和/或有关降水条件的信息可以大大降低这种不确定性。还已经表明,日照时间可以以类似于云朵的方式使用。 [参考:13]

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