Vallerotto Guido, Victoria Marta, Askins Stephen, Herrero Rebeca, Domínguez César, Antón Ignacio, Sala Gabriel
Opt Express. 2016 Sep 5;24(18):A1245-56. doi: 10.1364/OE.24.0A1245.
This paper presents a novel Fresnel lens capable of significantly reducing chromatic aberration in solar applications. The optical performance of this achromatic lens has been analyzed through ray-tracing simulations, showing a concentration factor three times higher than that attained by a classic silicone on glass (SOG) Fresnel lens while maintaining the same acceptance angle. This should avoid the need for a secondary optical element, reducing the cost associated with its manufacturing and assembly and increasing the module reliability. The achromatic lens is made of inexpensive plastic and elastomer which allows a highly scalable and cost-competitive manufacturing process similar to the one currently used for the fabrication of SOG Fresnel lenses.
本文介绍了一种新型菲涅尔透镜,它能够显著降低太阳能应用中的色差。通过光线追踪模拟分析了这种消色差透镜的光学性能,结果表明,在保持相同接收角的情况下,其聚光系数比传统的玻璃上硅(SOG)菲涅尔透镜高三倍。这应该可以避免使用二次光学元件的必要性,降低与其制造和组装相关的成本,并提高模块的可靠性。这种消色差透镜由廉价的塑料和弹性体制成,这使得其制造过程具有高度可扩展性且成本具有竞争力,类似于目前用于制造SOG菲涅尔透镜的过程。