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A novel and effective passive cooling strategy for photovoltaic panel

机译:光伏板的一种新颖有效的被动冷却策略

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This paper reports experimental work related to passively cooled free-standing silicon photovoltaic panels (PV) in different cooling configurations with a considered utilization of phase change materials (PCM). The PV panels (20Wp) were examined in typical Mediterranean climate conditions during several months of field monitoring. The focus of the research was to reconsider the usually conventional applied passive cooling approach for PVs in cases when the PV panel is cooled with phase-change materials (PV-PCM cooling systems). The conventional approach usually assumes one solid container filled with a PCM that is fixed into the backside surface of the PV panel to regulate the operating temperature of the PV panel. In the herein considered novel approach, instead of one PCM filled container, several smaller containers filled with PCM materials were used and experimentally tested to determine the performance benefit. The gained experimental results of the two different PV-PCM cooling configurations were compared with a referent PV panel. Based on the experimental results, it was found that the performance of the PV system (overall power yield), for the assumed measurement period, was improved for about 2.5% in the case of the concept with a full PCM container when compared to the referent PV panel. The proposed novel PV-PCM passive cooling approach, with several independent PCM containers, reached a performance improvement of 10.7%, which is considerably higher with respect to the usually applied concept with a full PCM container. The quantity of utilized PCM materials and aluminum, in several container configurations, was 47% (PCM) and 36% (aluminum) less, when compared with the passive cooling configuration with solid a PCM container. The revealed results indicated the potential of the novel proposed PV-PCM passive cooling approach regarding performance improvements and resource utilization, which would affect both economic and environmental aspects.
机译:本文报告了在不同冷却配置中与被动冷却的独立硅光伏板(PV)相关的实验工作,并考虑了相变材料(PCM)的利用。在几个月的现场监测期间,在典型的地中海气候条件下检查了PV面板(20WP)。该研究的重点是在用相变材料(PV-PCM冷却系统)冷却PV面板时重新考虑PVS的通常用于PVS的常规应用被动冷却方法。传统方法通常假设一个填充有PCM的一个固体容器,该PCM固定到PV面板的背面以调节PV面板的操作温度。在本文中,考虑了新颖的方法,而不是一个PCM填充容器,使用填充有PCM材料的几个较小的容器并进行实验测试以确定性能效益。将两种不同PV-PCM冷却构型的实验结果与参考光伏面板进行比较。基于实验结果,发现,对于假定的测量期,PV系统(总功率)的性能在与参考文献相比的情况下为完整的PCM容器的概念提高了约2.5%的约2.5% PV面板。提出的新型PV-PCM被动冷却方法,具有几种独立的PCM容器,达到了10.7%的性能提高,这对通常具有全PCM容器的通常应用概念相当高。与具有固体PCM容器的被动冷却结构相比,在几种集装箱配置中使用的PCM材料和铝的量为47%(PCM)和36%(铝)。揭示的结果表明,新颖的PV-PCM被动冷却方法的潜力有关性能改进和资源利用,这将影响经济和环境方面。

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