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基于热管的光伏冷却技术研究进展
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Research Progress of Heat Pipe-based Photovoltaic Cooling Technology
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    摘要:

    光伏发电技术的发展和推广是实现碳中和的关键途径之一,但传统光伏电池效率会随自身温度升高而下降,故采取冷却措施降低其温度成为光伏领域的热点问题,其中具有结构简单、传热效率高、可塑性强、被动运行等优点的热管近年来受到了重点关注,而相关研究现状尚待分析汇总. 本文从不同热管类型的视角对该领域进行了深入探讨,涵盖热管及其与天空辐射制冷、相变储能、热电制冷和纳米技术耦合下的多种冷却方式,并结合基于热管的光伏冷却技术的发展现状讨论其系统性能、经济和环境效益,对该研究方向进行了展望. 综合既有研究发现,热管冷却是一种环保、经济且可行的光伏冷却方式,能有效降低光伏温度并提升其均匀性,且在技术耦合下可实现太阳能与其他清洁能源的科学协同利用,提升其发电性能或实现制冷、储能等附加功能,其发展应用对推动节能减排事业有着积极意义.

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    The development and promotion of photovoltaic power generation technology is one of the key solutions to achieve carbon neutrality, but the efficiency of conventional photovoltaic cells decreases with rising temperature. Thus, taking measures to reduce its temperature becomes a hot issue in the photovoltaic field, among which heat pipe with a simple structure, high heat transfer efficiency, strong plasticity, and passive operation has received attention in recent years. However, the research status of heat pipes in photovoltaic cooling has yet to be analyzed and summarized. Therefore, the field is discussed in depth from the perspective of different heat pipe types, covering heat pipes and various cooling modes coupled with sky radiant cooling, phase change energy storage, thermoelectric cooling, and nanotechnology in this review paper. Combined with the development status of photovoltaic cooling technology based on heat pipes, the system performance, economic, and environmental benefits are discussed to prospect the research direction in this field. Based on the existing research, it is found that heat pipe cooling is an environmentally friendly and economically feasible method of photovoltaic cooling, which can effectively reduce the temperature of photovoltaic, improve its temperature uniformity, and realize the scientific collaborative utilization of solar energy and other clean energy under the technical coupling to improve its power generation performance or realize refrigeration, storage, and other additional functions. Its development and application will contribute to the cause of energy saving and emission reduction.

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CAO Jingyu, ZHENG Ling, PENG Jinqing?,SONG Jiaming, LI Nianping, PEI Gang.基于热管的光伏冷却技术研究进展[J].湖南大学学报:自然科学版,2024,(1):201~216

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  • 在线发布日期: 2024-01-16
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