Experimental Analysis on Annual Power Generations of Louver-integrated Bi-facial Photovoltaic Modules for Architectural Applications

Kyung-joo Cho, Dong-woo Cho
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Abstract

Solar power systems are the most commonly used renewable energy systems for energy self-sufficiency in buildings. In particular, bifacial photovoltaic modules for solar power generation have been researched for their optimal application, as they can generate electricity from two sides using only a single frame. In addition, because the price of a bifacial photovoltaic module is approximately 20% higher than that of a single-sided module, installing bifacial photovoltaic modules in suitable locations on buildings can be economical. To date, most studies have primarily focused on how to increase the amount of power generation from rear cells by arranging materials with high reflectivity on the floors of buildings. In point of fact, when bifacial photovoltaic modules are arranged in an east-west orientation, the maximum amount of power can be obtained in the mornings and afternoons. However, when these modules are installed in buildings in this orientation, a shadow is produced on the building surface according to the trajectory of the sun. In addition, when photovoltaic modules are used in the building envelope, the amount of power generation is often reduced because of this shadow. Nevertheless, even when considering this reduction in power generation, if the total power generation is higher than when photovoltaic modules are installed only vertically, the self-sufficiency rates of buildings can be improved. In this study, the shadow of a bifacial photovoltaic module was simulated using vertical photovoltaic modules to consider the possibilities of architectural application of bifacial photovoltaic modules.
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建筑用百叶集成双面光伏组件年发电量实验分析
太阳能发电系统是建筑物能源自给最常用的可再生能源系统。特别是,用于太阳能发电的双面光伏组件已经研究了其最佳应用,因为它们只使用一个框架就可以从两面发电。此外,由于双面光伏组件的价格比单面光伏组件高出约20%,因此在建筑物上合适的位置安装双面光伏组件是经济的。迄今为止,大多数研究主要集中在如何通过在建筑物地板上布置高反射率材料来增加后方电池的发电量。事实上,当双面光伏组件以东西方向布置时,可以在上午和下午获得最大的电量。然而,当这些模块以这个方向安装在建筑物中时,会根据太阳的轨迹在建筑物表面产生阴影。此外,在建筑围护结构中使用光伏组件时,往往会因为这种阴影而减少发电量。然而,即使考虑到发电量的减少,如果总发电量高于仅垂直安装光伏组件时,则可以提高建筑物的自给率。本研究采用垂直光伏组件模拟双面光伏组件的阴影,以考虑双面光伏组件在建筑上应用的可能性。
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