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Performance comparison of four kinds of flat nonimaging Fresnel lenses made of polycarbonates and polymethyl methacrylate for concentrated photovoltaics

机译:聚光光伏用聚碳酸酯和聚甲基丙烯酸甲酯制成的四种平面非成像菲涅耳透镜的性能比较

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摘要

Solar concentrators made of a single refractive primary optics are limited to a concentration ratio of about 1000× [Opt. Express19, A280 (2011)OPEXFF1094-408710.1364/OE.19.00A280], due only to longitudinal chromatic aberration, while mirrors are limited to ∼46,000× by the angular size of the Sun. To reduce the chromatic aberration while keeping cost-effective systems for concentrated photovoltaics, a study of four different kinds of flat Fresnel doublets made of polycarbonates and polymethyl methacrylate is presented. It reveals that Fresnel doublets may have fewer optical losses than non-Fresnel doublets, with a lower lateral chromatic split allowing for even higher concentration ratio.
机译:由单折射一次光学元件制成的太阳能聚光器的聚光比限制为约1000倍。 Express19,A280(2011)OPEXFF1094-408710.1364 / OE.19.00A280],这仅是由于纵向色差造成的,而镜子由于太阳的角度大小而被限制在约46,000倍。为了降低色差,同时又保持了用于聚光光伏系统的成本效益高的系统,提出了对由聚碳酸酯和聚甲基丙烯酸甲酯制成的四种不同类型的扁平菲涅耳双合透镜的研究。结果表明,菲涅耳双合透镜的光学损失可能比非菲涅耳双合透镜的少,并且横向色散较低,从而可以实现更高的浓度比。

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