Design, fabrication and preliminary testing of plasmonic luminescent solar concentrator devices

Aaron Glenn, Subhash Chandra, Sarah McCormack
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Abstract

This paper details the design process, fabrication, optimisation and early-stage performance testing of Luminescent and Plasmonic Luminescent Solar Concentrator (LSC & PLSC) devices. A PLSC is a novel approach to solar concentrator technologies that utilizes the principles of luminescence and plasmonics to enhance the devices' solar energy conversion efficiency. This research analyses various mould dimensions, materials and lightguide fabrication methodologies to ensure equivalent LSC/PLSC devices were created in a reproducible method. The optimisation was an iterative process throughout the production and testing stages after which a 100 × 100 × 5 mm PLSC was identified as the optimal for a rooftop installation. To ensure consistency in production as well as assessing the practicality of PLSC installations for building integration, performance testing has been conducted in both indoor and outdoor environments. Additionally, the lifespan of the devices are currently being investigated through ongoing performance evaluations. The incorporation of a reflective backplate has resulted in device efficiency improvements between 14–18% during indoor tests and was consequently included for all devices during outdoor performance analysis. Power conversion efficiencies of 2.3% and 1.7% have been recorded in sub-optimal conditions as well as concentration ratios of 11 and 9 for the PLSC and LSC devices respectively.
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等离子体发光太阳能聚光装置的设计、制造和初步测试
本文详细介绍了发光和等离子体发光太阳能聚光器的设计过程、制造、优化和早期性能测试。PLSC)设备。PLSC是太阳能聚光技术的一种新方法,它利用发光和等离子体学原理来提高设备的太阳能转换效率。本研究分析了各种模具尺寸、材料和光波导制造方法,以确保以可重复的方法创建等效的LSC/PLSC器件。优化是一个贯穿整个生产和测试阶段的迭代过程,之后,100 × 100 × 5 mm的PLSC被确定为屋顶安装的最佳材料。为了确保生产的一致性以及评估PLSC安装在建筑集成中的实用性,我们在室内和室外环境中进行了性能测试。此外,目前正在通过持续的性能评估来调查设备的寿命。在室内测试中,反射背板的结合使设备效率提高了14-18%,因此在室外性能分析中,所有设备都包括在内。在次优条件下,PLSC和LSC器件的功率转换效率分别为2.3%和1.7%,浓度比分别为11和9。
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