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Design of a Multi-Surface Solar Concentrator

机译:多表面太阳能聚光器的设计

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A multi-surface solar concentrator is proposed in this study. The concentrator is designed by improving the light receiving rate of aparabola when the incident angle changes within 0°~20° by adding involute, shifting the involute up, and changing the shape of theparabolic top. The results show that adding involute can effectively avoid light escaping from the bottom, which improves the lightreceiving rate under large incident angle. The light receiving rate is improved by increasing the height of involute at incident angle ofabout 5°~15°. Changing the shape of the top of parabola apparently improves the light receiving rate under high incident angle. Finally,the concentrator was tested experimentally. The experimental efficiency of the concentrator at different incident angles was 0.426. Theaverage light receiving rate of 0.868 was achieved through the optical simulation where different losses include the optical loss, such asthe absorption and reflection of the glass cover, the absorption of reflectors, the heat loss, etc. Thus, the concentrator provides a stableand efficient energy source.
机译:在本研究中提出了一种多表面太阳能聚光器。当通过添加渐渐渐次,将渐开孔提升改变入射角在0°〜20°内改变时,通过提高露天伞的光接收速率来设计浓缩器。结果表明,添加渐开致渐渐可以有效地避免从底部逸出的光,这改善了在大的入射角下的极高级别。通过在5°〜15°的入射角下增加渐渐渐的渐渐渐的高度来改善光接收速率。改变抛物线顶部的形状显然在高入射角下改善了光接收率。最后,实验测试了集中器。浓缩器以不同入射角的实验效率为0.426。通过光学模拟实现了0.868的灰色接收率,其中不同的损耗包括光学损耗,这种玻璃盖的吸收和反射,反射器的吸收,热量损失等,因此集中器提供了稳定的有效能量来源。

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