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首页> 外文期刊>Journal of Thermal Engineering >Monthly Design Data for Maximum Solar Radiation Falling on Collector Arrays in Baghdad City
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Monthly Design Data for Maximum Solar Radiation Falling on Collector Arrays in Baghdad City

机译:在巴格达市的集电极阵列上落下最大太阳辐射的每月设计数据

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Increasing use of solar energy as a clean and free solution for energy demand necessitates proper use of its equipment, enhanced spatial planning and distribution of solar collectors, optimum directional facing and tilt angle to ensure maximum solar radiation falling, and decreasing as possible as the shading effects of panel arrays. Most existing references lack comprehensive data about shading effects that varied along the year and design of solar array. In the present work, enhanced theoretical design data of solar collector arrays were tabulated for each month in Baghdad. MATLAB program was used to calculate the maximum clear sky solar radiation per unit area per day. The tabulated data yields an economically saved design of solar field or rooftop collector systems. The results indicated that, the shading effect on panel arrays almost vanishes when the distance between two panel rows to panel height ratio is greater than 1 in summer and greater than 2 in winter.
机译:随着太阳能的利用,作为能源需求的清洁和自由解决方案需要正确使用其设备,增强太阳能收集器的空间规划和分配,最佳方向面向和倾斜角度,以确保最大的太阳辐射落下,并尽可能减少作为阴影面板阵列的影响。大多数现有的参考文献缺乏有关沿年度变化的遮蔽效果的全面数据和太阳能阵列的设计。在本作的工作中,在巴格达的每个月都表现了太阳能收集器阵列的增强理论数据。 MATLAB程序用于计算每天每单位面积的最大清晰天空辐射。制表数据产生了经济保存的太阳能场或屋顶收集器系统的设计。结果表明,当两个面板行与面板高比率之间的距离大于1,夏季大于1时,面板阵列的阴影效果几乎消失了。

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