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Optical characterisation and optimisation of a static Window Integrated Concentrating Photovoltaic system

机译:静态窗口集成聚光光伏系统的光学特性和优化

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摘要

In this work, three different geometrical properties have been considered to develop a new solar concentrator design for Window Integrated Concentrating Photovoltaic (WICPV). They are (ⅰ) elliptical entry aperture; (ⅱ) hyperbolic profile section and (ⅲ) square exit aperture. Due to the increasing demands for stationary solar concentrators for building integrated photovoltaic (BIPV), this new design focuses on the use as a stationary solar concentrator. The complete optical analysis of the concentrator is carried out via 3-D ray trace technique. The analysis is based on all necessary design parameters, i.e., elliptical entry axis, concentrator height and the exit aperture geometry, in order to obtain the optimal overall optical performance of the new 3-D solar concentrator. Four different geometrical low concentration ratios were investigated: 4×, 6×, 8× and 10×. Results of the computer simulation show that the designed concentrator of 4× concentration ratio gives the higher optical efficiency of 68% compared to the other low concentration ratios. The 6×, however, gives a higher optical concentration ratio, despite having a lower optical efficiency (55%) than the 4×. A prototype of the designed concentrator was manufactured and tested under indoors conditions. The experimental results have shown an agreement by a difference of 5% with the simulation results. These results highlight how different factors need to be taken into consideration when carrying out optimisation studies. Overall, the proposed concentrator looks promising with sound results to confirm its performance and validate it as a stationary solar concentrator and thereby promote its use in WICPV.
机译:在这项工作中,已经考虑了三种不同的几何特性,以开发用于窗集成式聚光光伏(WICPV)的新型太阳能聚光器设计。它们是(ⅰ)椭圆形入射孔; (ⅱ)双曲线轮廓截面和(ⅲ)方形出口孔径。由于对用于建筑集成光伏(BIPV)的固定式太阳能集中器的需求不断增加,因此这种新设计着重于用作固定式太阳能集中器。集中器的完整光学分析是通过3-D射线追踪技术进行的。该分析基于所有必要的设计参数,即椭圆入射轴,聚光器高度和出射孔几何形状,以获得新型3-D太阳聚光器的最佳总体光学性能。研究了四种不同的几何低浓度比:4×,6×,8×和10×。计算机仿真结果表明,与其他低浓度比相比,设计的4倍浓度比的聚光器可提供68%的更高光学效率。然而,尽管6x具有比4x低的光学效率(55%),但是给出了更高的光学集中率。设计的集中器的原型已在室内条件下制造和测试。实验结果表明与仿真结果相差5%。这些结果表明,在进行优化研究时应如何考虑不同的因素。总体而言,拟议的聚光器看起来很有希望获得良好的结果,以确认其性能并验证其是否为固定式太阳能聚光器,从而促进其在WICPV中的使用。

著录项

  • 来源
    《Solar Energy》 |2013年第5期|273-282|共10页
  • 作者单位

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

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

  • 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

    CPV; BIPV; optics; low concentration; ray trace; solar energy;

    机译:每次观看费用;BIPV;光学;低浓度射线痕迹太阳能;

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