Design and Evaluation of the Fresnel-Lens Based Solar Concentrator System Through a Statistical-Algorithmic Approach

H. Qandil, Weihuan Zhao
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引用次数: 3

Abstract

A novel non-imaging Fresnel-lens-based solar concentrator-receiver system has been investigated to achieve high-efficiency photon and heat outputs with minimized effect of chromatic aberrations. Two types of non-imaging Fresnel lenses, a spot-flat lens and a dome-shaped lens, are designed through a statistical algorithm incorporated in MATLAB. The algorithm optimizes the lens design via a statistical ray-tracing methodology of the incident light, considering the chromatic aberration of solar spectrum, the lens-receiver spacing and aperture sizes, and the optimum number of prism grooves. An equal-groove-width of the Poly-methyl-methacrylate (PMMA) prisms is adopted in the model. The main target is to maximize ray intensity on the receiver’s aperture, and therefore, achieve the highest possible heat flux and output concentration temperature. The algorithm outputs prism and system geometries of the Fresnel-lens concentrator. The lenses coupled with solar receivers are simulated by COMSOL Multiphysics. It combines both optical and thermal analyses for the lens and receiver to study the optimum lens structure for high solar flux output. The optimized solar concentrator-receiver system can be applied to various devices which require high temperature inputs, such as concentrated photovoltaics (CPV), high-temperature stirling engine, etc.
基于统计算法的菲涅耳透镜太阳能聚光系统设计与评价
研究了一种新型的非成像菲涅耳透镜太阳能聚光接收系统,以实现高效的光子和热输出,同时最小化色差的影响。利用MATLAB中的统计算法设计了两种非成像菲涅耳透镜:点平面透镜和圆顶透镜。该算法通过入射光的统计光线跟踪方法,考虑太阳光谱色差、透镜-接收器间距和孔径大小以及棱镜槽的最佳数量,对透镜设计进行优化。模型采用等槽宽的聚甲基丙烯酸甲酯(PMMA)棱镜。主要目标是最大化接收器孔径上的射线强度,从而实现尽可能高的热流密度和输出浓度温度。该算法输出菲涅耳透镜聚光器的棱镜和系统几何形状。利用COMSOL Multiphysics软件对耦合太阳接收器的透镜进行了仿真。它结合了对透镜和接收器的光学和热分析,研究了高太阳通量输出的最佳透镜结构。优化后的太阳能集中接收系统可应用于各种需要高温输入的设备,如聚光光伏(CPV)、高温斯特林发动机等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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