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Solar Panel Cooling System with Hollow Fibres

机译:中空纤维太阳能电池板冷却系统

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摘要

Photovoltaic (PV) panel overheating drastically reduces their efficiency and lifespan. Overheating also has the potential to form electric arcs which can melt metal fixtures and burn away the module's insulating materials. Due to these phenomena, the introduction of water-cooling or, more generally, liquid-cooling systems inside the PV panel appears reasonable. Hollow fibre cooling system consisting of plastic tubes of a small diameter (less than 1 mm) was tested as a simple solution. Fibres can be placed in contact with the back surface of a PV panel and coolant flowing through provides efficient and uniform cooling. Heat removed from the panel may be used for domestic or industrial needs or released to the surroundings. Hollow fibres have very thin walls (about 0.1 mm) to transfer heat easily, and the system is light, compact and resistant to corrosion. Experiments confirmed that such system can cool the PV panel, removing up to 1 kW of heat and lowering the module temperature from 90℃ to about 50℃. It was observed that cooling improves the electric efficiency of PV cells by about 50%.
机译:光伏(PV)面板过热会大大降低其效率和使用寿命。过热还可能形成电弧,电弧会熔化金属固定装置并烧毁模块的绝缘材料。由于这些现象,在PV面板内部引入水冷系统或更普遍的液体冷却系统显得合理。作为简单解决方案,对由小直径(小于1毫米)塑料管组成的中空纤维冷却系统进行了测试。可以将纤维放置在与PV面板背面接触的位置,并且流过的冷却液可提供有效且均匀的冷却。从面板上去除的热量可用于家庭或工业需求或散发到周围环境。中空纤维的壁很薄(约0.1毫米),易于传递热量,该系统轻巧,紧凑且耐腐蚀。实验证实,这种系统可以冷却PV面板,散发高达1 kW的热量,并将组件温度从90℃降低到约50℃。观察到冷却使PV电池的电效率提高了约50%。

著录项

  • 来源
    《Applied solar energy 》 |2016年第2期| 86-92| 共7页
  • 作者单位

    Faculty of Mechanical and Process Engineering, Augsburg University of Applied Sciences, 86161 Augsburg, Germany;

    Heat Transfer and Fluid Flow Laboratory, Faculty of Mechanical Engineering, Brno University of Technology, Brno 61669, Czech Republic;

    Faculty of Mechanical and Process Engineering, Augsburg University of Applied Sciences, 86161 Augsburg, Germany;

    Heat Transfer and Fluid Flow Laboratory, Faculty of Mechanical Engineering, Brno University of Technology, Brno 61669, Czech Republic;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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