A comprehensive review and comparison of cooling techniques for photovoltaic panels: An emphasis on experimental setup and energy efficiency ratios

Q1 Chemical Engineering International Journal of Thermofluids Pub Date : 2024-08-01 DOI:10.1016/j.ijft.2024.100774
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Abstract

This study delves into exploring and comparing various cooling technologies for PV panels, with a special focus on revealing the harmful effect of excessive heat absorption on solar energy efficiency. Effective temperature management and dissipation of excess heat are essential to protect the integrity of PV panels and improve power generation. With a strong emphasis on the importance of experimental setups, this comprehensive research examines the methodologies and cooling methods used across a wide range of experimental studies, illustrating the complexities of data collection and analysis. Supported by schematic illustrations depicting various experimental setups, this study demystifies the complexities inherent in distinct PV cooling methods. Furthermore, the research extends beyond experimentation to include a comprehensive examination of the energy and economic aspects associated with various cooling technologies, including the calculation and presentation of energy efficiency ratios. It is worth noting that the results confirm the superiority of passive cooling techniques, including heat sinks (43 %), PCM (25), evaporation techniques (36 %), and spray cooling systems (54 %), in contrast to active cooling methods, as indicated by their net energy efficiency ratios. Passive cooling is advantageous for its low maintenance and cost-effectiveness, whereas active cooling, though effective in hot climates and enhancing PV efficiency, incurs higher initial costs and maintenance requirements. The novelty of this research lies in its detailed classification of cooling techniques and the specific materials used for each method, coupled with a thorough examination of the measuring tools employed. Furthermore, this study includes a comprehensive comparative analysis based on energy and economic aspects, alongside the advantages and disadvantages of each cooling technique. These invaluable insights hold the potential to revolutionize the development of efficient and dependable cooling strategies for PV systems, thereby elevating the feasibility and sustainability of solar energy as a pivotal cornerstone in our future energy landscape.

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光伏电池板冷却技术的全面回顾与比较:强调实验设置和能效比
本研究深入探讨和比较了光伏电池板的各种冷却技术,尤其侧重于揭示过度吸热对太阳能效率的有害影响。有效的温度管理和多余热量的散发对于保护光伏电池板的完整性和提高发电量至关重要。本综合研究着重强调实验设置的重要性,探讨了各种实验研究中使用的方法和冷却方式,说明了数据收集和分析的复杂性。在描述各种实验设置的示意图的支持下,本研究揭示了不同光伏冷却方法固有的复杂性。此外,研究还超越了实验范围,对各种冷却技术相关的能源和经济方面进行了全面考察,包括能效比的计算和展示。值得注意的是,研究结果表明,被动冷却技术(包括散热器(43%)、PCM(25%)、蒸发技术(36%)和喷雾冷却系统(54%))的净能效比优于主动冷却方法。被动冷却的优势在于维护成本低和成本效益高,而主动冷却虽然在炎热气候下有效并能提高光伏效率,但初始成本和维护要求较高。本研究的新颖之处在于对冷却技术和每种方法所使用的特定材料进行了详细分类,并对所使用的测量工具进行了全面检查。此外,这项研究还包括基于能源和经济方面的综合比较分析,以及每种冷却技术的优缺点。这些宝贵的见解有望彻底改变光伏系统高效、可靠冷却策略的发展,从而提升太阳能作为未来能源格局中重要基石的可行性和可持续性。
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来源期刊
International Journal of Thermofluids
International Journal of Thermofluids Engineering-Mechanical Engineering
CiteScore
10.10
自引率
0.00%
发文量
111
审稿时长
66 days
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