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Numerical Investigation of the Thermal Management Performance of MEPCM Modules for PV Applications

机译:光伏应用MEPCM模块热管理性能的数值研究

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摘要

The efficiency of photovoltaic modules decreases as the cell temperature increases. It is necessary to have an adequate thermal management mechanism for a photovoltaic module, especially when combined with a building construction system. This study aims to investigate via computational fluid dynamics simulations the heat transfer characteristics and thermal management performance of microencapsulated phase change material modules for photovoltaic applications under temporal variations of daily solar irradiation. The results show that the aspect ratio of the microencapsulated phase change material layer has significant effects on the heat transfer characteristics and the overall thermal performance of the two cases examined with different melting points (26 °C and 34 °C) are approximately the same.
机译:光伏模块的效率随着电池温度的升高而降低。对于光伏模块,尤其是与建筑施工系统结合使用时,必须具有适当的热管理机制。这项研究的目的是通过计算流体动力学模拟研究在日光辐射随时间变化的光伏应用中微囊化相变材料模块的传热特性和热管理性能。结果表明,微囊化的相变材料层的纵横比对传热特性有显着影响,并且在熔点(26°C和34°C)不同的情况下,两种情况的整体热性能都大致相同。

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