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Influence of Wind Speed and Direction on Cooling Effect for Concentrator Photovoltaic Module Investigated Using Wind Tunnel

机译:风速和方向对使用风洞研究了集中光光伏模块冷却效果的影响

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Background: The cooling effect of wind speed and wind direction was assessed using an 820× concentrator photovoltaic module and wind tunnel. This study allowed us to define the best setting for concentrator photovoltaic module that allowed the highest cooling effect and temperature drop, which was the main goal of this research. Methods: Solar cell used in this module is triple-junction solar cell consists of InGaP/InGaAs/Ge layers. The setting inside the wind tunnel was set to meet the module temperature condition as in outdoor environment. The module tilt angle was set to 10°, 45° and 80°. The module azimuth was set to 0°, 45°, 90°, 135° and 180°. Altogether there were fifteen set up conditions. Also the wind speed was set to 2, 5 and 8 m/s respectively. Results: Cooling effect was most effective when the azimuth angle was set at 90°, which means that wind was blowing from the side of the module. Conclusion: All set up conditions demonstrated that the module cools down at higher wind speed. In addition, azimuth of 90° shows the highest average amount of temperature drop of the solar cells.
机译:背景:使用820×浓缩器光伏模块和风洞评估风速和风向的冷却效果。本研究允许我们为允许最高冷却效果和温度降的集中光模块定义最佳设置,这是本研究的主要目标。方法:本模块中使用的太阳能电池是三界太阳能电池由InGaP / InGaAs / Ge层组成。风隧道内的设置设定为满足室外环境中的模块温度条件。模块倾斜角设定为10°,45°和80°。模块方位角设定为0°,45°,90°,135°和180°。完全有十五个设置条件。风速也分别设定为2,5和8 m / s。结果:当方位角设定为90°时,冷却效果最有效,这意味着风从模块的侧面吹来。结论:所有设置条件都表明,模块在较高的风速下冷却下来。此外,方位角为90°表示太阳能电池的最高平均温度降。

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