Performance Assessments of Direct Contact Serpentine Tube Based Photovoltaic Thermal Module: An Experimental Comparison

Ahssan Ashibil, P. Víg, Viktor Erdélyi, János Tóth, I. Farkas
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引用次数: 0

Abstract

Solar energy is the most focused in the field of renewable energy. It is a clean, green, environmentally friendly energy source. One of the modern technologies utilized by researchers to investigate the wasted heat by the photovoltaic module is the photovoltaic thermal collector, which simultaneously provides thermal and electrical power for various engineering applications. This study presented a new configuration of a water-cooled photovoltaic thermal module that utilizes a copper serpentine tube attached directly using thermal silicon to the poly-crystalline PV module for water circulation. The created PV/T was well-insulated using fiber material, insulation cork, and Wooden parts. The water flow was circulated via a DC pump with low power consumption. The fabricated unit was compared to the standalone photovoltaic module for the performance evaluation. The main result showed a significant enhancement in the electrical productivity of the photovoltaic thermal module compared to the standalone unit. The cell temperature was reduced by 13.3% compared to the standalone photovoltaic module. Accordingly, the water-based PV/T module effectively eliminated the heat dissipated to the surrounding region by the PV module by using a serpentine tube, assuring sustainable contribution.
基于直接接触蛇形管的光伏热模块的性能评估:实验比较
太阳能是可再生能源领域最受关注的能源。它是一种清洁、绿色、环保的能源。光伏集热器是研究人员用来研究光伏模块所浪费热量的现代技术之一,它能同时为各种工程应用提供热能和电能。本研究介绍了一种水冷光伏热模块的新结构,它利用热硅将铜蛇形管直接连接到多晶光伏模块上,以实现水循环。利用纤维材料、隔热软木和木质部件对 PV/T 进行了良好的隔热处理。水流通过低功耗的直流泵进行循环。为进行性能评估,将制作好的装置与独立的光伏模块进行了比较。主要结果表明,与独立单元相比,光电热能模块的电能生产率大幅提高。与独立光伏模块相比,电池温度降低了 13.3%。因此,水基光伏/热模块通过使用蛇形管,有效消除了光伏模块向周围区域散发的热量,确保了可持续贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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