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Characterization of Double-Doped Polymer Optical Fibers as Luminescent Solar Concentrators

机译:双掺杂聚合物光纤作为发光太阳能浓缩器的表征

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摘要

This work reports on a diameter dependence analysis of the performance as luminescent solar concentrators of three self-fabricated polymer optical fibers (POFs) doped with a hybrid combination of dopants. The works carried out include the design and self-fabrication of the different diameter fibers; an experimental analysis of the output power, of the output irradiance and of the fluorescent fiber solar concentrator efficiency; a comparison of the experimental results with a theoretical model; a study of the performance of all the fibers under different simulated lighting conditions; and a calculation of the active fiber length of each of the samples, all of them as a function of the fiber core diameter. To the best of our knowledge, this paper reports the first analysis of the influence of the POF diameter for luminescent solar concentration applications. The results obtained offer a general perspective on the optimal design of solar energy concentrating systems based on doped POFs and pave the way for the implementation of cost-effective solar energy concentrating devices.
机译:这项工作报告了一种直径依赖性分析,作为掺杂有掺杂剂的杂交组合的三种自制造的聚合物光纤(POFS)的发光太阳能集中器的性能。开展的作品包括不同直径纤维的设计和自制作;输出功率的实验分析,输出辐照度和荧光光纤太阳能集中器效率;实验结果与理论模型的比较;在不同模拟照明条件下所有纤维的性能研究;并计算每个样品的活性纤维长度,所有它们都是纤维芯直径的函数。据我们所知,本文报道了第一次分析了POF直径对发光太阳能浓度应用的影响。结果提供了一种关于基于掺杂POF的太阳能集中系统的最佳设计的一般性视角,并为实现成本效益的太阳能集中装置铺平道路。

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