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Experimental investigation of a passive cooling system for photovoltaic modules efficiency improvement in hot and arid regions

机译:热和干旱区光伏模块效率改进的无源冷却系统的实验研究

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摘要

Photovoltaic systems convert only a small amount of incident solar insolation into electrical energy while the rest is dissipated into heat. The increase in the PV cell temperature decreases significantly the electrical efficiency by about 0.5% for each 1 degrees C rise. Hence, it is necessary to keep the module temperature at low values to improve the efficiency and to minimize the thermal degradation effect. In this research paper, a passive cooling system was developed to mitigate the overheating of PV modules in order to enhance their performance. The developed cooling system is based on water evaporation and the capillary action of the burlap cloth that was attached directly to the rear surface of the module. Thermal and electrical characteristics of the modules (with and without cooling) were investigated experimentally under outdoor conditions during summer days of a hot climate region. Experimental results showed that a PV module temperature reduction of 20 degrees C (26%) was achieved with the help of the developed evaporative cooling system leading to an important increase of 14.75% in the electrical efficiency. The results also revealed the high effectiveness of the developed cooling system in the reduction and the maintaining of a uniform temperature distribution over the PV module throughout the day. Furthermore, this cooling system has many advantages such as being environment-friendly, low investment cost and low water consumption 0.39 L/h.
机译:光伏系统仅将少量入射的太阳能呈现为电能,而其余部分被消散成热量。 PV电池温度的增加显着降低了每1摄氏度的电效率约0.5%。因此,有必要将模块温度保持在低值以提高效率并最小化热劣化效果。在本研究论文中,开发了一种被动冷却系统以减轻光伏模块的过热,以提高它们的性能。开发的冷却系统基于水蒸发和直接连接到模块的后表面的毛刺布的毛细管作用。在炎热的气候区的夏季,在室外条件下实验研究模块(带和不冷却)的热电特性。实验结果表明,借助于发达的蒸发冷却系统实现了PV模块温度降低20℃(26%),导致电效率的重要增加14.75%。结果还揭示了开发冷却系统的高效性,在整个一天的均匀温度分布上的均匀温度分布。此外,该冷却系统具有许多优点,例如环保,低投资成本和低耗水量0.39L / h。

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