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Simulation of astronomical solar radiation over Yellow River Basin based on DEM

机译:基于DEM的黄河流域天文太阳辐射模拟。

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摘要

Based on the developed distributed model for calculating astronomical solar radiation (ASR), monthly ASR with a resolution of 1 km x 1 km for the rugged terrains of Yellow River Basin was calculated, with DEM data as the general characterization of terrain. This model gives an all-sided consideration on factors that influence the ASR. Results suggest that (1) Annual ASR has a progressive decrease trend from south to north; (2) the magnitude order of seasonal ASR is: summer>spring>autumn>winter; (3) topographical factors have robust effect on the spatial distribution of ASR, particularly in winter when a lower sun elevation angle exists; (4) the ASR of slopes with a sunny exposure is generally 2 or 3 times that of slopes with a shading exposure and the extreme difference of ASR for different terrains is over 10 times in January; (5) the spatial differences of ASR are relatively small in summer when a higher sun elevation angle exists and the extreme difference of ASR for different terrains is only 16% in July; and (6) the sequence of topographical influence strength is: winter>autumn>spring>summer.
机译:基于开发的用于计算天文太阳辐射(ASR)的分布式模型,计算了黄河流域崎terrain地形的月度ASR,其分辨率为1 km x 1 km,并以DEM数据作为地形的一般特征。该模型全面考虑了影响ASR的因素。结果表明:(1)年度ASR从南到北呈递减趋势; (2)季节性ASR的大小顺序为:夏季>春季>秋季>冬季; (3)地形因素对ASR的空间分布有很强的影响,特别是在存在较低太阳仰角的冬季; (4)阳光直射的斜坡的ASR一般是阴暗的斜坡的2或3倍,不同地形的ASR的极端差异在一月份超过10倍; (5)夏季存在较高的太阳仰角时,ASR的空间差异较小,7月不同地形的ASR极端差异仅为16%。 (6)地形影响强度的顺序为:冬季>秋季>春季>夏季。

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