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Modelling and experimental analysis of low concentrating solar panels for use in building integrated and applied photovoltaic (BIPV/BAPV) systems

机译:用于建筑集成和应用光伏(BIPV / BAPV)系统的低浓度太阳能电池板的建模和实验分析

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Geometrically equivalent V-trough and compound parabolic concentrators (CPC) were simulated to characterise the variation in optical efficiency using ray tracing modelling with COMSOL Multiphysics. The effect of CPC truncation and V-trough side wall angles were studied. The truncated CPC demonstrated much improved light acceptance outside the designed angle of acceptance when compared to the original CPC design and V-trough-like characteristics past the original design acceptance angles, consequently reducing material consumption for the manufacture of truncated CPC and therefore reduction in the cost of the system. Truncated CPCs showed optical efficiency equal to their full height counterparts, but a lower concentration ratio (4 at full, 3.6 at half and 2.7 at 50 mm height) due to an equivalent reduction of the inlet aperture size. The V-trough had a higher optical concentration ratio over 15-30 degrees angle of incidents (AoI), with the CPC taking over from 30 degrees AoI upwards. Experiments were performed on a 50 mm truncated CPC and a 22 degrees Trough Wall Angle (TWA) V-trough collector under outdoor conditions. Experimentally measured data showed good correlation with ray tracing simulation results. Both experimental and the ray tracing analyses showed the CPC concentrator achieving a 2.4% higher power output compared to the V-trough design. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用COMSOL Multiphysics的光线追踪模型,对几何等效的V型槽和复合抛物面聚光器(CPC)进行了仿真,以表征光学效率的变化。研究了CPC截断和V型槽侧壁角度的影响。与原始的CPC设计相比,截断的CPC在设计的接收角度范围之外显示出更好的光接收性能,并且超出了原始的设计接受角度,具有类似V型槽的特性,因此减少了制造截断的CPC的材料消耗,从而减少了制造成本。系统成本。截断的CPC的光学效率等于其全高度,但由于等效减小了入口孔径,因此其浓缩率较低(全高4,半高3.6,半高50时2.7)。 V型槽在15-30度入射角(AoI)上具有较高的光学集中度,CPC从30度AoI向上接管。在室外条件下,对50 mm截断的CPC和22度的槽壁角(TWA)V型槽收集器进行了实验。实验测量的数据显示出与射线追踪模拟结果的良好相关性。实验和射线追踪分析均显示,与V槽设计相比,CPC集中器的功率输出高出2.4%。 (C)2019 Elsevier Ltd.保留所有权利。

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