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使用光线追踪方法对低聚光介质复合抛物面聚光器的光学性能进行评估与优化。

Evaluation and optimization of the optical performance of low-concentrating dielectric compound parabolic concentrator using ray-tracing methods.

作者信息

Sarmah Nabin, Richards Bryce S, Mallick Tapas K

机构信息

Mechanical Engineering, School of Engineering & Physical Sciences, Heriot-Watt University, Edinburgh, EH14 4AS, UK.

出版信息

Appl Opt. 2011 Jul 1;50(19):3303-10. doi: 10.1364/AO.50.003303.

Abstract

We present a detailed design concept and optical performance evaluation of stationary dielectric asymmetric compound parabolic concentrators (DiACPCs) using ray-tracing methods. Three DiACPC designs, DiACPC-55, DiACPC-66, and DiACPC-77, of acceptance half-angles (0° and 55°), (0° and 66°), and (0° and 77°), respectively, are designed in order to optimize the concentrator for building façade photovoltaic applications in northern latitudes (>55 °N). The dielectric concentrator profiles have been realized via truncation of the complete compound parabolic concentrator profiles to achieve a geometric concentration ratio of 2.82. Ray-tracing simulation results show that all rays entering the designed concentrators within the acceptance half-angle range can be collected without escaping from the parabolic sides and aperture. The maximum optical efficiency of the designed concentrators is found to be 83%, which tends to decrease with the increase in incidence angle. The intensity is found to be distributed at the receiver (solar cell) area in an inhomogeneous pattern for a wide range of incident angles of direct solar irradiance with high-intensity peaks at certain points of the receiver. However, peaks become more intense for the irradiation incident close to the extreme acceptance angles, shifting the peaks to the edge of the receiver. Energy flux distribution at the receiver for diffuse radiation is found to be homogeneous within ±12% with an average intensity of 520 W/m².

摘要

我们使用光线追踪方法,展示了固定介电非对称复合抛物面聚光器(DiACPC)的详细设计概念和光学性能评估。分别设计了三种DiACPC,即DiACPC - 55、DiACPC - 66和DiACPC - 77,其接受半角分别为(0°和55°)、(0°和66°)以及(0°和77°),目的是为北纬(>55°N)地区的建筑立面光伏应用优化聚光器。通过截断完整的复合抛物面聚光器轮廓来实现介电聚光器轮廓,以达到2.82的几何聚光比。光线追踪模拟结果表明,所有在接受半角范围内进入设计聚光器的光线都能被收集,不会从抛物面侧面和孔径处逸出。发现设计的聚光器的最大光学效率为83%,该效率倾向于随着入射角的增加而降低。对于直射太阳辐照度的广泛入射角范围,发现强度以不均匀模式分布在接收器(太阳能电池)区域,在接收器的某些点处有高强度峰值。然而,对于接近极端接受角的入射辐射,峰值变得更强,峰值向接收器边缘移动。发现接收器处漫射辐射的能量通量分布在±12%范围内是均匀的,平均强度为520 W/m²。

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