Zheng Cheng, Li Qiyuan, Rosengarten Gary, Hawkes Evatt, Taylor Robert A
Appl Opt. 2017 May 10;56(14):4158-4167. doi: 10.1364/AO.56.004158.
In order to maximize solar energy utilization in a limited space (e.g., rooftops), solar collectors should track the sun. As an alternative to rotational tracking systems, this paper presents a compact, semi-passive beam steering prism array which has been designed, analyzed, and tested for solar applications. The proposed prism array enables a linear concentrator system to remain stationary so that it can integrate with a variety of different solar concentrators, and which should be particularly useful for systems which require a low profile (namely rooftop-mounted systems). A case study of this prism array working within a specific rooftop solar collector demonstrates that it can boost the average daily optical efficiency of the collector by 32.7% and expand its effective working time from 6 h to 7.33 h. Overall, the proposed design provides an alternative way to "follow" the sun for a wide range of solar thermal and photovoltaic concentrator systems.
为了在有限空间(如屋顶)内最大限度地利用太阳能,太阳能集热器应跟踪太阳。作为旋转跟踪系统的替代方案,本文提出了一种紧凑的半被动光束转向棱镜阵列,该阵列已针对太阳能应用进行了设计、分析和测试。所提出的棱镜阵列能使线性聚光系统保持静止,从而可与各种不同的太阳能聚光器集成,这对于需要低外形(即屋顶安装系统)的系统尤其有用。对该棱镜阵列在特定屋顶太阳能集热器内工作的案例研究表明,它可将集热器的平均每日光学效率提高32.7%,并将其有效工作时间从6小时延长至7.33小时。总体而言,所提出的设计为众多太阳能热和光伏聚光器系统“跟踪”太阳提供了一种替代方法。