光学
选矿厂
菲涅耳方程
物理
菲涅耳透镜
镜头(地质)
材料科学
菲涅耳衍射
菲涅耳数
菲涅耳区
反射(计算机编程)
非成像光学
折射率
几何光学
回复反射器
杂散光
激光束
全内反射
反射率
物理光学
衍射效率
作者
Chun Ting Chen,Jui Wen Pan
出处
期刊:Applied Optics
[Optica Publishing Group]
日期:2026-03-02
卷期号:65 (10): 3175-3175
摘要
In this work, a dome-shaped Fresnel concentrator was designed and analyzed to enhance the optical efficiency and angular performance of refractive solar concentrator systems. Three segmentation strategies, including equal angle division, equal vertical coordinate division, and equal horizontal coordinate division, were proposed to optimize the dome-shaped Fresnel surface. Simulation results showed that the equal vertical coordinate division achieved the widest acceptance angle, while the equal horizontal coordinate division provided the highest optical efficiency. The equal angle division exhibited balanced performance with simple geometry and high manufacturability. The equal horizontal coordinate division was selected as the optimal solution due to its high efficiency and manufacturability, achieving an efficiency of 78.4%, an acceptance angle of 1.52 deg, a tracking error of 6 deg, and a working F-number of 0.72. With a radius of 500 mm and a prism thickness between 2 and 10 mm, the concentrator demonstrated high concentration capability, wide angular performance, and structural reliability, making it a promising design for future solar thermal and photovoltaic applications.
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