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Experimental study of efficiency of solar panel by phase change material cooling

机译:相变材料冷却太阳能电池板效率的实验研究

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The dependence of efficiency of photovoltaic panels on their temperature during operation is a major concern for developers and users. In this paper, a phase change material (PCM) cooling system was designed for a 60W mono-crystalline solar panel. Tealights candle was selected as the cooling medium. The solar irradiance was recorded using Kipp & Zonen CMP3 pyranometer and Meteon data logger. Temperature distribution on the surface of solar panel, output voltage and output current of solar panel were measured. The average irradiance throughout data collection was found to be 705W/m~2 and highest irradiance was 1100 W/m~2. The average solar panel temperature was 43.6°C and a maximum temperature of 53°C was at the center of solar panel. Results showed that average power output and efficiency of the solar panel were 44.4W and 15%, respectively. It was found that the higher the solar irradiance, the lower the efficiency of solar panel and the higher the temperature and power output of solar panel. This is due to the fact that high irradiance results in high power input and high solar panel temperature. But high PV panel temperature reduces its power output. Therefore, the increase of power input outweighs that of power output, which leads to the decrease of efficiency of solar panel with the increase of solar irradiance. Compared with solar panel without cooling, the power output and efficiency of solar panel did not increase with PCM cooling. It indicates that Tealights candle as PCM cooling is not efficient in improving the efficiency of solar panel in this study.
机译:光伏电池板效率对其温度的依赖性是开发人员和用户的主要问题。本文设计了一种相变材料(PCM)冷却系统,用于60W单晶太阳能电池板。 Tealights蜡烛被选为冷却介质。使用Kipp&Zonen CMP3 Pyranometer和Metoon Data Logger记录太阳辐照度。测量太阳能电池板表面上的温度分布,测量了太阳能电池板的输出电压和输出电流。发现整个数据收集的平均辐照度为705W / m〜2,最高的辐照度为1100W / m〜2。平均太阳能电池板温度为43.6°C,最高温度为53°C的太阳能电池板中心。结果表明,太阳能电池板的平均功率输出和效率分别为44.4W和15%。发现太阳能辐照度越高,太阳能电池板效率越低,太阳能电池板的温度和功率输出越高。这是由于高辐照度导致高功率输入和高太阳能电池板温度。但高光伏面板温度降低了其功率输出。因此,电力输入的增加超过了电力输出的电力输出,这导致太阳能电池板的效率降低,随着太阳辐照度的增加。与太阳能电池板的太阳能电池板相比,太阳能电池板的功率输出和效率与PCM冷却没有增加。它表示Tealights蜡烛作为PCM冷却在提高本研究中的太阳电池板效率方面并不有效。

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