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基于全内反射的平面波导太阳能聚光器,采用对称空气棱镜作为耦合器。

Total internal reflection-based planar waveguide solar concentrator with symmetric air prisms as couplers.

作者信息

Xie Peng, Lin Huichuan, Liu Yong, Li Baojun

出版信息

Opt Express. 2014 Oct 20;22 Suppl 6:A1389-98. doi: 10.1364/OE.22.0A1389.

Abstract

We present a waveguide coupling approach for planar waveguide solar concentrator. In this approach, total internal reflection (TIR)-based symmetric air prisms are used as couplers to increase the coupler reflectivity and to maximize the optical efficiency. The proposed concentrator consists of a line focusing cylindrical lens array over a planar waveguide. The TIR-based couplers are located at the focal line of each lens to couple the focused sunlight into the waveguide. The optical system was modeled and simulated with a commercial ray tracing software (Zemax). Results show that the system used with optimized TIR-based couplers can achieve 70% optical efficiency at 50 × geometrical concentration ratio, resulting in a flux concentration ratio of 35 without additional secondary concentrator. An acceptance angle of ± 7.5° is achieved in the x-z plane due to the use of cylindrical lens array as the primary concentrator.

摘要

我们提出了一种用于平面波导太阳能聚光器的波导耦合方法。在这种方法中,基于全内反射(TIR)的对称空气棱镜被用作耦合器,以提高耦合器的反射率并使光学效率最大化。所提出的聚光器由位于平面波导上方的线聚焦柱面透镜阵列组成。基于TIR的耦合器位于每个透镜的焦线处,以将聚焦的太阳光耦合到波导中。使用商业光线追踪软件(Zemax)对光学系统进行了建模和模拟。结果表明,使用优化的基于TIR的耦合器的系统在50倍几何聚光比下可实现70%的光学效率,在无需额外二次聚光器的情况下,通量聚光比达到35。由于使用柱面透镜阵列作为初级聚光器,在x-z平面上实现了±7.5°的接收角。

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