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Thin-Film LSCs Based on PMMA Nanohybrid Coatings: Device Optimization and Outdoor Performance

机译:基于PMMA纳米复合涂层的薄膜LSC:设备优化和户外性能

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This study concerns the design optimization of thin-film luminescent solar concentrators (TLSCs) based on polymethylmethacrylate (PMMA)/silica nanohybrid films doped with coumarin dyestuffs specialized in coloring plastics. Two designs of TLSCs had been prepared and characterized. The first consists of a transparent nanohybrid layer coated on a fluorescent PMMA substrate. The second design is the ordinary configuration in which fluorescent nanohybrid layer is coated on a transparent PMMA substrate. The investigation of the spectral properties and efficiency parameters recommended the best solar energy conversion efficiency for the second design. The outdoor performance of optimized TLSC was also evaluated under clear sky conditions of Riyadh city, and the hourly values of the optical efficiency,ηopt, were calculated for one year. The best performance was achieved in summer since the short circuit current for PV cell was doubled after being attached to TLSC and the value ofηoptreached 40% which is higher than other values recorded before due to the abundant solar energy potential in the Arabian Peninsula.
机译:这项研究涉及基于掺杂有专门用于塑料着色的香豆素染料的聚甲基丙烯酸甲酯(PMMA)/二氧化硅纳米杂化薄膜的薄膜发光太阳能集中器(TLSC)的设计优化。已经准备并表征了两种TLSC设计。第一个由涂在荧光PMMA基底上的透明纳米杂化层组成。第二种设计是普通结构,其中荧光纳米杂化层被涂覆在透明的PMMA基板上。对光谱特性和效率参数的研究为第二个设计建议了最佳的太阳能转换效率。在利雅得市晴朗的天空条件下,还评估了优化的TLSC的室外性能,并计算了一年的光效率小时值ηopt。由于将光伏电池的短路电流连接到TLSC之后,其短路电流增加了一倍,并且由于阿拉伯半岛拥有巨大的太阳能潜力,ηopt的值达到40%,比以前记录的其他值高,因此夏季获得了最佳性能。

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