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Experimental Method for Improving Efficiency on Photovoltaic Cell Using Passive Cooling and Floating Method

机译:浮动冷却方法提高光伏电池效率的实验方法

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Electrical energy is the key to the development of human civilization, it causes an increase in electricity production using fossil fuels. This causes the emergence of the need for electricity generation with renewable energy sources. This research discusses the improvement of efficiency in photovoltaic cells (PV) by using the floating method and also the cooling method, especially, passive heatsink cooling. Tests carried out measures the performance of PV panels by measuring the influence of floating and cooling methods. The data shows that the increase in power is 30.54% with floating method while using passive heatsink cooling only increase power output by 14.31%. The temperature in the PV panel tends to increase with increasing intensity of solar radiation. In addition, both methods resulted in increase of the PV panel temperature by 6.42% and 0.60% for floating method and passive heatsink cooling respectively.
机译:电能是人类文明发展的关键,导致使用化石燃料的电力生产增加。这导致出现了具有可再生能源的发电需求。本研究讨论了通过使用浮动方法和冷却方法来提高光伏电池(PV)的效率,特别是无源散热冷却。测试进行了通过测量浮动和冷却方法的影响来测量PV面板的性能。数据显示,使用无源散热器冷却的浮动方法电源的增加是30.54%,仅增加功率输出14.31%。 PV面板中的温度随着太阳辐射强度的增加而趋于增加。此外,对于浮动方法和无源散热冷却,两种方法都导致PV面板温度的增加6.42%和0.60%。

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