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A method to compute solar radiation at surface in any time interval based on NCEP reanalysis

机译:基于NCEP再分析的任何时间间隔计算表面太阳辐射的方法

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Diurnal variation of solar radiation at the Earth's surface is of importance to data assimilation, weather and climate model assessment However, the shortage of solar radiation data has limited the use of other meteorological data. Solar radiation at a time of day can not be simply calculated by interpolation because it is strongly influenced by solar hour angle, cloud, water vapor, aerosols, and other factors, which brings great troubles to model applications This paper presents a method to compute mean solar radiation at surface in any time interval and develops a data set of hourly mean solar radiation that can be used to assess models by use of NCEP 6-hourly mean of downward solar radiation flux at surface Compared with measured hourly mean of solar radiation, the calculated hourly mean solar radiation agrees closely with observation in numerical value and variation trend The calculated hourly-mean solar radiation reflects the diurnal variation all over the world and it can be used as land model forcing. It is helpful to simulation, validation and assessment of the weather and climate model and can make up the shortage of measured solar radiation data.
机译:地球表面的太阳辐射的昼夜变化对数据同化,天气和气候模型评估非常重要,然而,太阳辐射数据的短缺限制了其他气象数据的使用。在一天中的时间的太阳辐射不能用内插法简单地计算,因为它强烈地受太阳时角,云,水蒸汽,气溶胶,以及其他因素,这在模型应用带来极大的麻烦本文提出了一种方法来计算平均影响在任何时间间隔的表面上的太阳辐射,并开发了一定的时间平均太阳辐射,可用于通过在表面上使用下向太阳辐射通量的NCEP 6小时平均值来评估模型,与太阳辐射的每小时平均值相比,计算的每小时平均太阳辐射与数值的观察密切相同,变化趋势计算的每小时平均太阳辐射反映了世界各地的昼夜变化,它可以用作土地模型强迫。这是有帮助的天气和气候模式的模拟,验证和评估,并可以弥补测得的太阳辐射数据的不足。

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