光伏组件输出电压和电流的冷却系统应用

Edwin Hattu
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引用次数: 2

摘要

太阳能电池是一种从太阳能中提取电能的能源。这种能源利用光伏组件吸收的阳光,然后转化为电能。研究阶段从工具的准备开始;下一阶段是构建铝板散热片,散热片由铝材料制成,散热片厚度为0.3mm。将其粘贴在光伏组件背面。数据采集方法为每小时采集不同太阳强度的7小时逐时数据,以表格形式显示。从3天的研究数据结果来看,未使用冷却系统的模块1与使用冷却系统的模块2的温差平均值为1.470℃,电压差为1.06伏,电流强度差为0.05安培。由此可以得出,光伏组件使用冷却系统后,组件温度会降低。所述使用冷却系统的光伏组件上的电压高于未使用冷却系统的光伏组件。相反,与不使用冷却系统的组件中的强电流相比,冷却光伏组件中的电流强度略低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Colling System Application In PV Module Toward Output Voltage And Current PV Module
Solar cell is a source of electrical energy derived from solar energy. This energy source utilizes sunlight absorbed by the PV Module and then transformed into electrical energy. The research stage begins with the preparation of the tool; the next stage is constructing a heat discharger made of aluminum plate which is given a cooling fin of aluminum material with a thickness of 0.3mm. After that it is affixed to the back side of the PV module. Data collection method is conducted by taking hourly data for 7 hours with different solar intensities every hour and displayed in tabular form. From the results of research data conducted for 3 days, data obtained on average value of the temperature difference between module 1 that does not use a cooling system and module 2 that uses a cooling system is 1.470C, the difference in voltage is 1.06 volts and the difference in current strength is 0.05 Amp. Thus it can be concluded that by applying a cooling system to the PV module the module temperature will be cooler, and the voltage on the PV module using the cooling system is higher than the PV module which is not used cooling system. To the contrary the current strength in the cooled PV module is slightly lower in value compared to strong currents in modules that do not use a cooling system.
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