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Theoretical investigation considering manufacturing errors of a high concentrating photovoltaic of cassegrain design and its experimental validation

机译:考虑高浓度c草设计光伏制造误差的理论研究及实验验证

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摘要

A compact high concentrating photovoltaic module based on cassegrain optics is presented; consisting of a primary parabolic reflector, secondary inverse parabolic reflector and a third stage homogeniser. The effect of parabolic curvatures, reflector separation distance and the homogeniser's height and width on the acceptance angle has been investigated for optimisation. Simulated optical efficiencies of 84.82-81.89% over a range of +/- 1 degrees tracking error and 55.49% at a tracking error of +/- 1.5 degrees were obtained. The final singular module measures 169 mm in height and 230 mm in width (not including structural components such as cover glass). The primary reflector dish has a focal length of 200 mm and is a focal with the secondary inverse reflector which has a focal length of 70 mm. The transparent homogenising optic has a height of 70 mm, an entry aperture of 30 x 30 mm and an output aperture of 10 x 10 mm to match the solar cell. This study includes an analysis of the optical efficiency, acceptance angle, irradiance distribution and component errors for this type of concentrator. In particular material stability and the surface error of the homogeniser proved to be detrimental in theoretical and experimental testing reducing the optical efficiency to similar to 40%. This study proves the importance of material choice and simulating optical surface quality, not simply assuming ideal conditions. In the experimental testing, the acceptance angle followed simulation results as did the optical efficiency of the primary and secondary reflectors. The optical efficiency of the system against increasing solar misalignment angles is given for the theoretical and experimental work carried out. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:提出了一种基于cassegrain光学的紧凑型高浓度光伏组件。由初级抛物面反射器,次级逆抛物面反射器和第三级均质器组成。为了优化,研究了抛物线曲率,反射器分离距离以及均化器的高度和宽度对接收角的影响。在+/- 1度的跟踪误差范围内获得了84.82-81.89%的模拟光学效率,在+/- 1.5度的跟踪误差下获得了55.49%的模拟光学效率。最终的单个模块的高度为169 mm,宽度为230 mm(不包括玻璃盖之类的结构部件)。主反射器皿的焦距为200 mm,并且与次级反向反射器的焦距为70 mm。透明均质光学器件的高度为70毫米,入射孔为30 x 30毫米,输出孔为10 x 10毫米,以匹配太阳能电池。这项研究包括对这种聚光器的光学效率,接收角,辐照度分布和组件误差的分析。特别地,在理论和实验测试中,均质器的材料稳定性和表面误差被证明是有害的,从而将光学效率降低至接近40%。这项研究证明了选择材料和模拟光学表面质量的重要性,而不仅仅是简单地假设理想条件。在实验测试中,接受角跟随模拟结果,主反射镜和次反射镜的光学效率也一样。对于进行的理论和实验工作,给出了针对增加的太阳未对准角的系统的光学效率。 (C)2016作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Solar Energy》 |2016年第6期|235-245|共11页
  • 作者单位

    Univ Exeter, Environm & Sustainabil Inst, Penryn Campus, Penryn TR10 9FE, England;

    Tezpur Univ, Dept Energy, Tezpur 784028, Assam, India;

    Univ Jaen, Ctr Adv Studies Energy & Environm, Campus Ias Lagunillas, Jaen 23071, Spain;

    Univ Exeter, Environm & Sustainabil Inst, Penryn Campus, Penryn TR10 9FE, England;

    Indian Inst Technol, Dept Mech Engn, Heat Transfer & Thermal Power Lab, Madras 600036, Tamil Nadu, India;

    Univ Jaen, Ctr Adv Studies Energy & Environm, Campus Ias Lagunillas, Jaen 23071, Spain;

    Univ Exeter, Environm & Sustainabil Inst, Penryn Campus, Penryn TR10 9FE, England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Concentrator photovoltaics; Optics; Ray trace simulation; Experimental testing;

    机译:聚光光伏;光学;射线迹线模拟;实验测试;

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