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Advanced thermal management of a solar cell by a nano-coated heat pipe plate: A thermal assessment

机译:通过纳米涂层热管板对太阳能电池进行高级热管理:热评估

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The significant temperature effect on solar cells results in loss of photovoltaic (PV) efficiency by up to 20-25%, which may over-negate the efforts in technology development for promoting PV efficiency. This motivates studies in thermal management for solar cells. This study concerns the thermal assessment of an advanced system composed by a solar cell and a nano-coated heat pipe plate for thermal management. Solar cell temperature and the corresponding evaporative heat flux are evaluated based on a conjugated heat transfer model. It indicates that the solar cell can be cooled down to be below 40 degrees C and suffers no temperature effect due to the use of the heat pipe plate. The heat pipe plate can provide sufficient cooling to the solar cell under different solar irradiance. The analytical and experimental results show that the maximum evaporative heat flux of the current heat pipe plate is around 450 W/m(2). However, the practical heat removal flux at the condenser is 390 W/m(2). The loss of cooling energy is due to the gathered vapour at the condenser section, which prevents the liquid-vapour circulation inside the vacuum chamber of the device. By using additional cooling strategies (i.e. heat sink, PCMs, water jacket) at the condenser section, the heat removal ability can be further improved. (C) 2016 Elsevier Ltd. All rights reserved.
机译:温度对太阳能电池的显着影响导致光伏(PV)效率损失高达20%至25%,这可能与技术开发中旨在提高PV效率的努力相抵消。这激发了对太阳能电池热管理的研究。这项研究涉及对由太阳能电池和用于热管理的纳米涂层热管板组成的高级系统的热评估。基于共轭传热模型评估太阳能电池温度和相应的蒸发热通量。这表明由于使用热管板,太阳能电池可以冷却到40摄氏度以下,并且没有温度影响。热管板可以在不同的太阳辐射下为太阳能电池提供足够的冷却。分析和实验结果表明,当前热管板的最大蒸发热通量约为450 W / m(2)。但是,冷凝器处的实际排热通量为390 W / m(2)。冷却能量的损失归因于在冷凝器部分聚集的蒸汽,这阻止了设备真空室内的液体蒸汽循环。通过在冷凝器部分使用其他冷却策略(即散热器,PCM,水套),可以进一步提高散热能力。 (C)2016 Elsevier Ltd.保留所有权利。

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