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Theoretical analysis of the blinds integrated photovoltaic modules

机译:百叶窗集成光伏组件的理论分析

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The purpose of this study is to analyze the electric energy harvesting efficiency of Venetian blinds according to their design parameters using photovoltaic modules. The size of photovoltaic modules attached to the blind panel and the inclined angle of the blind frame's photovoltaic modules are the primary parameters in its efficiency because of shading effects except geographical characteristics. The ventilation's affect on the temperature decrease of photovoltaic modules in a double-layer window facade was analyzed using a heat exchange network analysis between layers of the photovoltaic module integrated blind (PV-blind). The temperature of the components in a PV-blind and the amounts of harvested energy are calculated with an hourly time step during one sunny day. The maximum temperature of a photovoltaic module without ventilation is almost 78 C, which means a daily electric energy production rate decrease from 14.1 % to 10.4% compared to temperature independent case studies. Blinds with a ventilated facade for buoyancy driven airflow provide a maximum photovoltaic temperature of 58.4 C and have a greater efficiency at 11.7%.
机译:这项研究的目的是根据使用光伏模块的设计参数来分析百叶帘的电能收集效率。由于除了地理特征之外的遮蔽效应,附接到百叶窗板上的光伏模块的尺寸和百叶窗框的光伏模块的倾斜角度是其效率的主要参数。通过使用光伏模块集成百叶窗(PV-blind)各层之间的热交换网络分析,分析了通风对双层窗户外墙中光伏模块温度下降的影响。在一个晴天期间,以每小时的时间步长计算PV百叶窗中组件的温度和所收集的能量。没有通风的光伏模块的最高温度接近78摄氏度,这意味着与温度无关的案例研究相比,每天的电能产生率从14.1%降低到10.4%。百叶窗带有通风的正面,用于浮力驱动的气流,可​​提供58.4 C的最高光伏温度,效率高达11.7%。

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