朴聪, 张国玉. 菲涅尔太阳能聚光镜的设计[J]. 应用光学, 2011, 32(1): 23-26.
引用本文: 朴聪, 张国玉. 菲涅尔太阳能聚光镜的设计[J]. 应用光学, 2011, 32(1): 23-26.
PIAO Cong, ZHANG Guo-yu. ADesign of Fresnel lens for solar concentrator[J]. Journal of Applied Optics, 2011, 32(1): 23-26.
Citation: PIAO Cong, ZHANG Guo-yu. ADesign of Fresnel lens for solar concentrator[J]. Journal of Applied Optics, 2011, 32(1): 23-26.

菲涅尔太阳能聚光镜的设计

ADesign of Fresnel lens for solar concentrator

  • 摘要: 讨论并设计了一种超薄的菲涅尔聚光镜,根据费玛原理设计出以非球面为截面的中心折射区域和TIR(内部全反射)棱镜为锯齿部分的折反区域,用ZEMAX软件优化得到最佳聚光态,并利用ZEMAX软件模拟出菲涅尔聚光镜聚光性及其能量分布,最终得到总厚度仅为30mm的折反复合型菲涅尔聚光镜。实验结果表明:折反复合型菲涅尔聚光镜不仅能提高太阳能的利用率,同时也使会聚到光电池表面上的能量分布更均匀,复合式菲涅尔聚光镜的性能优于传统的菲涅尔聚光镜。

     

    Abstract: An ultra-thin Fresnel condenser lens was discussed and designed. According to Fema principle, an aspheric surface was designed as central refraction area, and a total internal reflection (TIR) prism was designed as a catadioptric area in saw-teeth part. The optimal condense performance was achieved with ZEMAX. ZEMAX was used to simulate the concentration and distribution of Fresnel condenser, and a Fresnel condenser with thickness of 30mm was designed. The compounded Fresnel lens improves the utilization of solar energy and provides a better uniformity of energy distribution. The design method generates a better compound condenser than conventional Fresnel condenser.

     

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