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Solar Receivers Optimum Tilt Angle at Southern Hemisphere

机译:太阳能接收南半球最佳倾斜角度

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One of the important parameters that affects the performance of a solar collector is its tilt angle with the horizon. This is because the variation of tilt angle changes the amount of solar radiation reaching the collector surface. Meanwhile, is the rule of thumb, which says that solar collector should be orientated towards the Equator with a tilt equal to latitude, valid for high latitudes region? Thus, it is required to determine the optimum tilt for Equator facing collectors. In addition, the question may rise: how much adjustments of Equator facing solar collector tilt angle is reasonable to do during a year? A mathematical model was used for estimating the solar radiation on a tilted surface, and to determine the optimum tilt angle and orientation (surface azimuth angle) for the solar collector at any latitude. This model was applied for determining optimum tilt angle in the high latitudes zone in the Southern Hemisphere, on a daily basis, as well as for a specific period. The optimum angle was computed by searching for the values for which the radiation on the collector surface is a maximum for a particular day or a specific period. The results reveal that changing the tilt angle 12 times in a year ( i.e. using the monthly optimum tilt angle) maintains approximately the total amount of solar radiation near the maximum value that is found by changing the tilt angle daily to its optimum value. This achieves a yearly gain in solar radiation up to 1.8 times of the case of a horizontal surface while the daily gain reaches 60 times approximately. Moreover, general formulas are proposed for predicting daily optimum tilt angle and optimum tilt angle over any number of days.
机译:影响太阳能收集器性能的重要参数之一是与地平线的倾斜角度。这是因为倾斜角的变化改变了到达收集器表面的太阳辐射量。同时,是经验的规则,这表明太阳能收集器应向赤道定向,倾斜等于纬度,适用于高纬度地区?因此,需要确定赤道面对收集器的最佳倾斜。此外,问题可能上升:赤道面向太阳能收集器倾斜角度的调整是合理的,可以在一年内完成吗?数学模型用于估计倾斜表面上的太阳辐射,并确定任何纬度的太阳能收集器的最佳倾斜角度和定向(表面方位角)。该模型用于每天以及特定时期确定南半球的高纬度区中的最佳倾斜角度。通过搜索收集器表面上辐射的值是特定日期或特定时段的最大值来计算最佳角度。结果表明,在一年内改变倾斜角12次(即,使用月度最佳倾斜角度)在通过每天将倾斜角度改变为其最佳值来保持最大值附近的最大值附近的总量。这实现了在太阳辐射的每年增加到1.8倍水平表面的1.8倍,而每日增益约为60倍。此外,提出了通用公式,用于在任何数天内预测日常最佳倾斜角度和最佳倾斜角度。

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