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Theoretical analysis of solar thermal collector and flat plate bottom reflector with a gap between them

机译:太阳能集热器与平板底部反射器之间有缝隙的理论分析

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Augmentation of solar radiation absorbed on a flat plate solar thermal collector by a flat plate bottom reflector was numerically determined when there was a gap between the collector and reflector. The inclination of both the collector and reflector was assumed to be adjustable according to the season. A mirror-symmetric plane of the collector to the reflector was introduced, and a graphical model was proposed to calculate the amount of solar radiation reflected by the reflector and then absorbed on the collector. The performance was analyzed for three typical days at a latitude of 30^oN. Solar radiation absorbed on the collector can be increased by the bottom reflector even if there is a gap between the collector and reflector. The optimum inclinations of both the collector and reflector are almost the same while the gap length is less than the lengths of the collector and reflector. However, the range of inclination of the reflector that can increase the solar radiation absorbed on the collector decreases with an increase in gap length, and the solar radiation absorbed on the collector rapidly decreased with an increase in the gap length when the reflector and/or collector were not set at a proper angle.
机译:当集热器和反射器之间存在间隙时,通过数值确定由平板底部反射器吸收在平板太阳能集热器上的太阳辐射的增强。假设收集器和反射器的倾斜度可以根据季节进行调整。介绍了集热器与反射镜的镜面对称平面,并提出了一个图形模型来计算由反射器反射然后被吸收器吸收的太阳辐射量。在30°oN的纬度下,对性能进行了三天的典型分析。即使在收集器和反射器之间存在间隙,底部反射器也可以增加吸收在收集器上的太阳辐射。当间隙长度小于收集器和反射器的长度时,收集器和反射器的最佳倾斜度几乎相同。然而,当反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜和/或反射镜//或反射镜和/或反射镜//或反射镜和/或反射镜//或反射镜//或反射镜和/或反射镜//或反射镜//或反射镜增加时,反射器的倾斜范围会随着间隙长度的增加而迅速减小。收集器的角度不正确。

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