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Using phase change materials in photovoltaic systems for thermal regulation and electrical efficiency improvement : a review and outlook

机译:在光伏系统中使用相变材料进行热调节和提高电效率:回顾与展望

摘要

The study presented in this paper is based on a detailed review of the literature focused on the use of phase change materials (PCM) for photovoltaic (PV) module thermal regulation and electrical efficiency improvement. The influence of high temperature on PV power generation has been examined and the findings have highlighted the importance of effective thermal regulation for PV models. Various PV cooling methods employed to maintain better PV performance are discussed and the recently emerging PV-PCM system concept for thermal regulation is introduced. A comprehensive literature review of the state-of-the-art aspects of this technology, such as system development, performance evaluation, materials selection, heat transfer improvement, numerical models, simulation, and application in practice is given. The PV-PCM system, however, might not be economically feasible if the enhancement of PV efficiency only is sought. The PV-ST-PCM system, i.e. integrated with a solar thermal (ST) system, has therefore been investigated as the stored heat can be extracted for other thermal applications. The dual PCM roles demonstrate significant application prospects for the combined technology. However, both PV-PCM and PV-ST-PCM systems are still mainly in the research and laboratory test stages, with obvious scope for practical applications but with attendant challenges. Suggestions for the future work are presented.
机译:本文提出的研究基于对文献的详细审查,该文献集中于使用相变材料(PCM)进行光伏(PV)模块的热调节和提高电效率。考察了高温对光伏发电的影响,研究结果突出了有效热调节对光伏模型的重要性。讨论了用于维持较好PV性能的各种PV冷却方法,并介绍了最近出现的用于热调节的PV-PCM系统概念。对该技术的最新方面进行了全面的文献综述,例如系统开发,性能评估,材料选择,传热改进,数值模型,仿真以及在实践中的应用。但是,如果仅寻求提高PV效率,则PV-PCM系统可能在经济上不可行。因此,已经对PV-ST-PCM系统(即与太阳能热(ST)系统集成在一起)进行了研究,因为可以将存储的热量提取出来用于其他热应用。双重PCM角色展示了该组合技术的重要应用前景。但是,PV-PCM和PV-ST-PCM系统仍主要处于研究和实验室测试阶段,具有明显的实际应用范围,但也伴随着挑战。提出了对未来工作的建议。

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