光伏系统
被动冷却
辐射冷却
电子设备和系统的热管理
热的
机械工程
材料科学
辐射冷却
太阳能
反射(计算机编程)
辐射传输
工程物理
热辐射
金属泡沫
环境科学
太阳增益
消散
被动式太阳能建筑设计
工艺工程
主动冷却
水冷
核工程
航空航天工程
冷却能力
光伏
电流(流体)
传热
热舒适性
热能储存
辐射热
高效能源利用
热能
能源性能
可再生能源
辐射能
辐射
建筑工程
作者
Kehinde Temitope Alao,Kamaruzzaman Sopian,Syed Ihtsham Ul-Haq Gilani,Jing Ee Yit,Shuib Husin,Taiwo Onaopemipo Alao,Zeshan Aslam,Hussein A. Kazem,Syed Ihtsham Ul-Haq Gilani
出处
期刊:
日期:2025-11-13
卷期号:8: 100076-100076
标识
DOI:10.1016/j.meaene.2025.100076
摘要
The performance and lifespan of solar Photovoltaic (PV) panels can be drastically improved by minimizing thermal buildup, which can constrain performance. This review critically compares two trending passive cooling technologies, such as radiative paints and metal foam fins, across their mechanisms, materials, and performance metrics. Radiative paints that enable solar radiation reflection and thermal emission, and metal foam fins that increase heat dissipation by providing increased surface area, are investigated separately and in combination. We discuss the contributions of these techniques to reduced operational temperatures, improved energy yield, and enhanced PV panel longevity. The review integrates discussion of the materials used in these technologies, the difficulties in their implementation, and the need for standard test procedures. We also cover multidimensional performance tests, including thermal conductivity, cooling performance, and environmental footprint. The review also provides current research gaps and recommends future research and development directions in hybrid cooling systems, the incorporation of new materials, and large-scale experimental verification. The synthesis offers a comprehensive review of the prospects of passive cooling technologies for optimizing PV systems, with implications for both academic research and real-world applications in the solar industry.
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