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Estimates of the global radiation incident on inclined surfaces based of sunshine duration

机译:根据日照持续时间估算入射在倾斜表面上的整体辐射

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摘要

Estimating equations of global radiation based on the sunshine duration were proposed for horizontal surface and with inclination of 12.85, 22.85 and 32.85° facing the North in Botucatu, SP, Brazil, in monthly, seasonal and annual groupings of data. Simple linear correlations were applied (for definition of the linear and angular coefficients of Angstrom-Prescott model), in a database measured in all three inclinations in different periods (22.85°: 04/1998 to 07/2001; 12.85°: 08/2011 to 02/2003; and 32.85°: 03/2003 to 12/2007) concomitant with horizontal measures and sunshine duration. The statistical performance of the model was analysed by the means absolute error (MBE), the square root of the mean square error (RMSE) and the index adjustment (d). The minimum global radiation transmissivity varied from 14.35% in August (12.85°) to 27.86% in December (32.85°) and the maximum transmissivity ranged between 62.10% and 78.90%, for June (32.85°) and December (12.85°). Increasing the angle of inclination surface increased the scattering and decreased the index of adjustment and performance. The worst results were found for application of the seasonal and annual models in the months of autumn and winter for 32.85° (RMSE below 42.93% and adjustment superior to 0.4693).
机译:在月度,季节和年度数据分组中,提出了基于日照时长的水平表面的全球辐射估算方程,其倾斜角为12.85、22.85和32.85°,面向巴西SP的博图卡图,向北。在数据库中,在不同时间段(22.85°:04/1998至07/2001; 12.85°:08/2011)的所有三个倾角测量的数据库中,应用了简单的线性相关性(用于定义Angstrom-Prescott模型的线性和角系数)到02/2003;和32.85°:03/2003到12/2007),同时还需要水平测量和日照持续时间。通过均值绝对误差(MBE),均方差的平方根(RMSE)和指数调整(d)分析模型的统计性能。最低的总辐射透射率从8月的14.35%(12.85°)到12月(32.85°)的27.86%不等,6月(32.85°)和12月(12.85°)的最大透射率介于62.10%和78.90%之间。增加倾斜表面的角度会增加散射,并降低调整和性能指标。使用秋季和冬季月份的32.85°季节和年度模型时发现最差的结果(RMSE低于42.93%,并且调整优于0.4693)。

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