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Global solar radiation estimation from measurements of visibility and air temperature extremes

机译:根据能见度和极端温度的测量值估算的全球太阳辐射

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摘要

Solar radiation is the main source of energy for the survival of life and its associated activities. It is important to know accurate solar radiation value in areas such as agricultural activities, solar energy systems, heating, and meteorology. In this study, we present a model for the estimation of solar radiation value with other meteorological parameters in cases where solar radiation cannot be measured or not available. This model is based on the relationship between solar radiation and measured air temperature and visibility extremes. As is known, the incident global solar radiation is attenuated by clouds, aerosols, ozone layer, water vapor, etc.. In the model, the attenuation of the solar radiation is expressed by dew point temperature, visibility, and the maximum and minimum air temperatures. Dew-point temperature refers to the effect of water vapor on solar radiation, air temperature extremes are used to signify cloudiness. Visibility also gives the effect on the attenuation of solar radiation by air pollutants and aerosols in the model. The model was applied to the data taken from meteorological stations in Turkey. Error analysis was performed and compared with the models in the literature and satisfactory results were obtained.
机译:太阳辐射是维持生命及其相关活动的主要能源。重要的是要了解诸如农业活动,太阳能系统,供暖和气象学等领域的准确太阳辐射值。在这项研究中,我们提出了一个模型,用于在无法测量或无法获得太阳辐射的情况下,结合其他气象参数估算太阳辐射值。该模型基于太阳辐射与测得的气温和极端能见度之间的关系。众所周知,入射的全球太阳辐射会被云,气溶胶,臭氧层,水蒸气等衰减。在模型中,太阳辐射的衰减由露点温度,能见度以及最大和最小空气表示。温度。露点温度是指水蒸气对太阳辐射的影响,极端温度用于表示浑浊。可见性还会影响模型中空气污染物和气溶胶对太阳辐射的衰减。该模型已应用于从土耳其气象站获取的数据。进行了误差分析,并与文献中的模型进行了比较,并获得了满意的结果。

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