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Assessment of solar radiation on diversely oriented surfaces and optimum tilts for solar absorbers in Malaysian tropical latitude

机译:评估马来西亚热带纬度上不同定向表面上的太阳辐射和太阳能吸收器的最佳倾斜度

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In this paper, the solar radiation on diversely oriented surfaces and optimum tilts for solar absorbers were assessed. The KT solar radiation model was coded in the MATLAB-based environment to compute the monthly solar radiation values. Seven-year data of monthly average daily solar radiation on a horizontal surface in Bangi, Malaysia (latitude?=?3°N) were adopted as input in the simulation programme and the results were compared with the local optimum tilt angle at solar noon and other solar radiation model. The contour mappings of solar irradiation at various orientations in 12?months were presented. Results showed that the surface tilted?≤20° could intercept a relatively high solar intensity, which was less sensitive to the variation of azimuths with average solar insolation deviation of 11.82?%. The monthly optimum tilt angle altered throughout the year, ranging from ?24° (in equator direction) to +22° (in north direction). The estimated annual optimum slope, 1.4° facing to the equator, was close to local latitude. Based on the seasonal analysis, the north-facing surface was able to intercept higher daily average solar radiation energy compared to south-facing plane. The optimum angles for seasonal south- and north-facing surfaces were found to be 14.4° and 14.8°, respectively, with a tolerable slope deviation of?±5° from the optimal values in the present work.
机译:在本文中,评估了不同定向表面上的太阳辐射以及太阳能吸收器的最佳倾斜度。在基于MATLAB的环境中对KT太阳辐射模型进行了编码,以计算每月太阳辐射值。在模拟程序中,采用了马来西亚班吉(纬度?=?3°N)在水平面上的月平均日太阳辐射的七年数据作为输入,并将其与太阳正午和其他太阳辐射模型。给出了12个月内不同方向的太阳辐射轮廓图。结果表明,倾斜角度≤20°的表面可以截获相对较高的太阳强度,对方位角的变化较不敏感,平均日照偏差为11.82%。全年的每月最佳倾斜角在24度(赤道方向)至+22度(北方向)之间变化。估计的年度最佳斜率(面对赤道为1.4°)接近当地纬度。根据季节分析,与朝南的飞机相比,朝北的飞机能够拦截更高的日平均太阳辐射能。发现季节性的朝南和朝北的表面的最佳角度分别为14.4°和14.8°,与当前工作中的最佳值的允许偏差为±5°。

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