首页> 外文会议>The 2003 International Solar Energy Conference Mar 15-18, 2003 Kohala Coast, Hawall >OPTICAL DESIGN OF AN INFRARED NON-IMAGING DEVICE FOR A FULL-SPECTRUM SOLAR ENERGY SYSTEM
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OPTICAL DESIGN OF AN INFRARED NON-IMAGING DEVICE FOR A FULL-SPECTRUM SOLAR ENERGY SYSTEM

机译:全光谱太阳能系统的红外非成像设备的光学设计

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A solar collector/receiver system for a full-spectrum solar energy system is being designed by a research team lead by Oak Ridge National Laboratory and the University of Nevada, Reno. This solar energy system is unique in that it utilizes the majority of the solar spectrum by splitting the infrared (IR) and visible energy for two different end uses. The visible light will be used for day lighting and the IR energy for electrical power generation. This paper is concerned with the optics that will provide uniform irradiance of the IR energy on the thermal photovoltaic (TPV) array. The benchmark full-spectrum collector/receiver and prototype TPV array have been built, so the work performed here is to match the two systems together for optimal performance. The design consists of a non-imaging (NT) system for the IR flux incident on the TPV array mounted behind the secondary mirror. Results of the ray-tracing analysis of the different systems tested are presented.
机译:橡树岭国家实验室和内华达大学里诺分校领导的研究小组正在设计用于全光谱太阳能系统的太阳能收集器/接收器系统。该太阳能系统的独特之处在于,它通过将红外(IR)和可见光能量分成两种不同的最终用途来利用大部分太阳光谱。可见光将用于日间照明,而红外能量将用于发电。本文涉及的光学器件将在热光伏(TPV)阵列上提供均匀的IR能量辐照。已经建立了基准全光谱收集器/接收器和原型TPV阵列,因此此处要做的工作是将两个系统匹配在一起以实现最佳性能。该设计由一个非成像(NT)系统组成,该系统用于入射在安装在辅助镜后面的TPV阵列上的IR通量。给出了测试的不同系统的光线跟踪分析的结果。

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