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Study of a building integrated bifacial photovoltaic facade

机译:建筑集成双环光伏立面的研究

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An increase of knowledge of the mid- term performance of building integrated bifacial photovoltaic modules in real conditions is required in order to validate their relevance. Thus, in this work, the experimental study during more than one year of an innovative building integrated bifacial photovoltaic ventilated facade developed in the framework of the CONIPHER Life project and mounted on a test cell at Le Bourget du Lac is presented focusing mainly on the photovoltaic modules thermal behaviour and electrical performance. Moreover, a specific attention is made on the photovoltaic facade seasonal impact on the building energy consumption compared to a similar test cell comprising a non-insulated concrete wall. An important thermal gradient is observed along the facade in warm season, as expected, mainly due to site albedo, with mean photovoltaic modules temperature up to 68.3 degrees C. The innovative facade produced an annual cumulated electrical energy of 63.8 kWh/m(2) with a performance ratio of 0.7 and a mean annual efficiency of 6.3%. A huge reduction of the building total energy consumption up to 92% in winter compared to reference is observed. As further studies, the facade will be installed on an office building in order to demonstrate its performance in real conditions.
机译:需要增加在实际条件下建立集成的双因子光伏模块的中期性能的知识是为了验证其相关性。因此,在这项工作中,在包装寿命框架框架中开发的一年以上的创新建筑集成的双因子光伏通风外置的实验研究,并在Le Bourget du Lac的测试单元上展示了主要在光伏的焦点上模块热行为和电气性能。此外,与包含非绝缘混凝土墙的类似测试电池相比,对光伏门面对建筑能量消耗的季节性影响进行了特定的注意。正如预期的那样,沿着温暖季节的立面观察了一个重要的热梯度,主要是由于部位反培,平均光伏模块温度高达68.3摄氏度。创新的外立面产生了63.8千瓦时/米(2)的年累积电能性能比为0.7,平均年效率为6.3%。观察到与参考相比,冬季高达​​92%的建筑物总能量消耗巨大减少。作为进一步的研究,外立面将安装在办公大楼上,以便在真实条件下展示其性能。

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