非成像菲涅耳透镜在太阳能应用中不同制造方法的原型研究

Ai Jiang Sexton, H. Qandil, M. Abdallah, Weihuan Zhao
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引用次数: 0

摘要

非成像菲涅耳透镜在提高太阳能系统效率方面发挥着重要作用。许多研究人员一直在开发新的菲涅耳透镜设计来提高聚光器的性能。为了使菲涅耳透镜的复杂设计从概念理论到实际应用,同时保持其效率,找到在实验室规模上以低成本实现最佳质量制造的最佳制造方法至关重要。这项工作将系统地研究四种先进的制造方法,包括压力铸造、热压印、3D打印和CNC加工。用这四种方法制作了六个菲涅耳透镜,并在实验室用太阳模拟器和太阳能电池对其性能进行了测试。CNC加工提供了最优质的实验室级菲涅耳透镜,提高了太阳能电池效率118.3%。3D打印和热压印方法也有望制造出性能良好的透镜——将太阳能电池的效率提高40-70%。然而,从长远来看,3D打印透镜存在材料退化的问题。虽然压力铸造是最简单的制造方法,但制造透镜的性能是最低的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of non-imaging Fresnel lens prototyping with different manufacturing methods for solar energy application
Non-imaging Fresnel lenses have been playing an important role in improving the efficiency of the solar energy systems. Many researchers have been developing novel designs of Fresnel lenses to enhance the concentrator performance. To bring the complex design of a Fresnel lens from a conceptual theory to a real-life application while maintaining its efficiency, it is critical to find the optimum manufacturing method that achieves the best quality fabrication at low cost in the lab scale. This work will systematically investigate four advanced manufacturing methods for their lens-making capabilities, including pressure casting, hot embossing, 3D printing, and CNC machining. Six Fresnel lenses were fabricated by the four methods, which were tested in the lab by a solar simulator and a solar cell to demonstrate their performances. The CNC machining provides the best quality lab-scale Fresnel lens that enhances the solar cell efficiency by 118.3%. 3D printing and hot embossing methods are also promising for the fabrication of good performance lenses – increasing the solar cell efficiency by 40-70%. However, the 3D printed lens has the issue of material degradation on the long term. Although the pressure casting is the easiest manufacturing method, the performance of fabricated lens was the lowest.
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