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The effects of nominal power of array and system head on the operation of photovoltaic water pumping set with array surface covered by a film of water

机译:阵列和系统扬程的标称功率对阵列表面被水膜覆盖的光伏水泵机组运行的影响

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The main problem in using photovoltaic (PV) systems is the low energy conversion efficiency of PV cells. The efficiency of PV cells will decrease significantly as the temperature of the cells exceed to a certain limit. In order to increase the efficiency, it is necessary to reduce the operating temperature of array. One of the ways for improving the system operation is cooling PV cells with a thin film of water. The aim of this research is to study the effects of nominal power of array and system head on the operation of system by using this method. For this purpose, a photovoltaic water pumping system is installed in Kerman city (Latitude: 30° 17' and longitude: 57° 50') and different methods examined to reduce PV cells temperature. The most effective way was chosen and used in set. This method is based on providing water for cooling cells by the pump itself. Experiments show that with decreasing of array nominal power and increasing in system head, the power generated by the array increases significantly. This increases the panel and total efficiency and therefore the pump flow rate. This method is ineffective as the array nominal power increases significantly.
机译:使用光伏(PV)系统的主要问题是PV电池的低能量转换效率。 PV电池的效率将随着电池温度超过一定极限而显着降低。为了提高效率,必须降低阵列的工作温度。改善系统运行的方法之一是用薄膜水冷却PV电池。本研究的目的是利用这种方法研究阵列和系统头部的标称功率对系统运行的影响。为此,在克尔曼市安装了光伏水泵系统(纬度:30°17',经度:57°50'),并研究了各种降低光伏电池温度的方法。最有效的方法已选择并固定使用。该方法基于泵本身为冷却池提供水。实验表明,随着阵列标称功率的减小和系统扬程的增加,阵列产生的功率显着增加。这增加了面板和总效率,从而提高了泵的流量。该方法无效,因为阵列的标称功率显着增加。

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