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Thermal management of photovoltaic module with metal matrix embedded PCM

机译:带有金属矩阵嵌入式PCM的光伏模块的热管理

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摘要

The ineluctable growth of Photo-Voltaic (PV) systems highlights the importance of improving its efficiency. As distinguishable part of irradiance is converted to heat, the performance of PV module deteriorates. Amongst several PV thermal management techniques, use of Phase Changing Material (PCM) proved to be effective in both PV and PV-thermal (PV/T) systems. However, its low thermal conductivity (both in solid and liquid phase) attracts heat spreader. In the present study, a novel type of aluminum metal matrix having honeycomb structure has been incorporated in PV/T system. As the matrix is porous in nature, diffusion rate is better compared to solid metal plate. An extensive outdoor experiments revealed the improvement in various energy parameters viz. open circuit voltage, short circuit current, conversion efficiency compared to conventional PCM based PV/T as well as PV system. The maximum improvement of 8.6% in conversion efficiency is possible with the present model against 3.5% with PCM based PV/T due to temperature drop of 11.1% and 7.9% respectively.
机译:光伏(PV)系统不可避免的增长突显了提高其效率的重要性。由于辐照度的显着部分转化为热量,因此PV组件的性能下降。在几种光伏热管理技术中,相变材料(PCM)的使用在光伏和光伏热(PV / T)系统中均被证明是有效的。但是,其低导热率(固相和液相)都吸引了散热器。在本研究中,一种新型的具有蜂窝结构的铝金属基体已被纳入PV / T系统。由于基质本质上是多孔的,因此与固态金属板相比,扩散速率更好。广泛的户外实验揭示了各种能量参数的改善,即。与传统的基于PCM的PV / T以及PV系统相比,开路电压,短路电流,转换效率更高。由于温度下降分别为11.1%和7.9%,因此本模型可以实现最大转换效率8.6%的改进,而基于PCM的PV / T可以达到3.5%的改进。

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