Shen S C, Chang S J, Yeh C Y, Teng P C
Opt Express. 2013 Nov 4;21 Suppl 6:A942-52. doi: 10.1364/OE.21.00A942.
In this paper, total internal reflection-refraction (TIR-R) concentration (U-TIR-R-C) lens module were designed for uniformity using the energy configuration method to eliminate hot spots on the surface of solar cell and increase conversion efficiency. The design of most current solar concentrators emphasizes the high-power concentration of solar energy, however neglects the conversion inefficiency resulting from hot spots generated by uneven distributions of solar energy concentrated on solar cells. The energy configuration method proposed in this study employs the concept of ray tracing to uniformly distribute solar energy to solar cells through a U-TIR-R-C lens module. The U-TIR-R-C lens module adopted in this study possessed a 76-mm diameter, a 41-mm thickness, concentration ratio of 1134 Suns, 82.6% optical efficiency, and 94.7% uniformity. The experiments demonstrated that the U-TIR-R-C lens module reduced the core temperature of the solar cell from 108 °C to 69 °C and the overall temperature difference from 45 °C to 10 °C, and effectively relative increased the conversion efficiency by approximately 3.8%. Therefore, the U-TIR-R-C lens module designed can effectively concentrate a large area of sunlight onto a small solar cell, and the concentrated solar energy can be evenly distributed in the solar cell to achieve uniform irradiance and effectively eliminate hot spots.
在本文中,采用能量配置方法设计了全内反射-折射(TIR-R)聚光(U-TIR-R-C)透镜模块,以实现均匀性,消除太阳能电池表面的热点并提高转换效率。当前大多数太阳能聚光器的设计都强调太阳能的高功率聚光,然而却忽略了由于集中在太阳能电池上的太阳能分布不均所产生的热点导致的转换效率低下问题。本研究提出的能量配置方法运用光线追踪概念,通过U-TIR-R-C透镜模块将太阳能均匀地分布到太阳能电池上。本研究采用的U-TIR-R-C透镜模块直径为76毫米,厚度为41毫米,聚光比为1134个太阳,光学效率为82.6%,均匀性为94.7%。实验表明,U-TIR-R-C透镜模块将太阳能电池的核心温度从108℃降至69℃,整体温差从45℃降至10℃,并有效地相对提高了约3.8%的转换效率。因此,所设计的U-TIR-R-C透镜模块能够有效地将大面积阳光聚焦到小面积太阳能电池上,并且聚焦后的太阳能能够均匀地分布在太阳能电池中,实现均匀辐照并有效消除热点。