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Air cooling low concentrated photovoltaic/thermal (LCPV/T) solar collector to approach uniform temperature distribution on the PV plate

机译:空气冷却低浓缩光伏/热(LCPV / T)太阳能收集器,用于接近PV板上的均匀温度分布

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摘要

In this study, to prevent local excessive temperature on a photovoltaic module, uniformity of air flow as cooling fluid in a low concentrated photovoltaic/thermal (LCPV/T) collector has considered. To obtain a uniform distribution of airflow taking into account the overall operating conditions, eight different geometries of diffuser were investigated theoretically by using computational fluid dynamics (CFD). Simulations were conducted on the most appropriate sketch with acceptable uniform air flow distribution on the PV module. The experimental results showed that the new designed diffuser significantly developed an even distribution of air velocity throughout the collector. Comparing the results with the previously published results showed that the new diffuser concave side walls and three inner deflectors improved the electrical efficiency of the PV/T collector by 20%. Also the effects of air flow rates (three levels) and concentrated solar illumination on the performance of a PV/System was experimentally measured. Using a concentrator improves electrical, thermal and overall efficiency by 36%, 42.2% and 40.5% respectively. By increasing air flow rate from 0.008 to 0.016 (kg/s); the electrical, thermal and overall efficiency were improved by 13.5, 22.75 and 22.41% respectively.
机译:在该研究中,为了防止光伏模块对局部过度的温度,考虑了低浓缩光伏/热(LCPV / T)收集器中的冷却流体的空气流均匀性。为了考虑到整体操作条件的气流均匀分布,通过使用计算流体动力学(CFD)理论上研究了八种不同的漫射器几何形状。在最合适的草图上进行模拟,在PV模块上具有可接受的均匀空气流量分布。实验结果表明,新的设计扩散器显着显着开发了整个收集器中的空气速度的分布。将结果与先前公布的结果进行比较表明,新的扩散器凹面壁和三个内部偏转器将PV / T收集器的电效率提高了20%。还测量了空气流速(三级)和浓缩太阳能照射对PV /系统性能的影响。使用浓缩器将电气,热和整体效率提高36%,42.2%和40.5%。通过将空气流量增加到0.008至0.016(kg / s);电气,热和整体效率分别提高13.5,22.75和22.41%。

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