首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Luminescent solar concentrators: From experimental validation of 3D ray-tracing simulations to coloured stained-glass windows for BIPV
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Luminescent solar concentrators: From experimental validation of 3D ray-tracing simulations to coloured stained-glass windows for BIPV

机译:发光太阳能聚光器:从3D射线追踪模拟的实验验证到BIPV的彩色玻璃窗

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摘要

Luminescent solar concentrators (LSC) are a promising technology for building integrated photovoltaics (BIPV) given the wide variety of forms and colours that can be realised. Given the flexibility of the technology, the use of ray-trace modelling is indispensable in the design, performance evaluation, and optimisation of LSCs. This work begins by comparing a three dimensional (3D) ray-trace model of an LSC with experimental results. The study includes 70 samples - both square and circular LSCs, containing five different fluorescent organic dyes (BASF Lumogen) each at seven different concentrations. The figure-of-merit used for performance evaluation was the average power density determined at the LSC edge sheet, measured using an optical fibre connected to a spectrometer. The results demonstrate that 3D ray-trace results gives good agreement with the experimental measurements, to within around + 5% within a wide concentration range (optical density=0.05-8) and a maximum difference of + 13%. The wide range of colours achieved is presented in a CIE chart. Overall, the validated experimental results give confidence in the use of modelling for future larger LSCs for BIPV. Therefore, based on these results and the colours achievable, a model of a stained-glass window is constructed and its performance throughout a solar day is simulated.
机译:鉴于可以实现的形式和颜色多种多样,发光太阳能集中器(LSC)是一种用于构建集成光伏(BIPV)的有前途的技术。鉴于技术的灵活性,光线跟踪模型的使用对于LSC的设计,性能评估和优化是必不可少的。这项工作首先将LSC的三维(3D)射线轨迹模型与实验结果进行比较。研究包括正方形和圆形LSC的70个样品,其中包含五种不同的荧光有机染料(BASF Lumogen),每种染料的浓度分别为七种。用于性能评估的品质因数是在LSC边缘板上确定的平均功率密度,是使用连接到光谱仪的光纤测量的。结果表明,3D射线示踪结果与实验测量值非常吻合,在宽浓度范围(光学密度= 0.05-8)和最大差异为+ 13%的范围内,误差在+ 5%左右。 CIE图表中显示了所实现的各种颜色。总体而言,经过验证的实验结果使人们有信心在BIPV的未来更大LSC的建模中使用。因此,基于这些结果和可获得的颜色,构建了彩色玻璃窗的模型,并模拟了整个太阳日的性能。

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