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Photovoltaic collectors efficiency according to their integration in buildings

机译:光伏集热器的效率取决于它们在建筑物中的集成度

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A model for building integrated photovoltaic systems has been developed and implemented in a dynamic simulation tool. This tool takes into account the thermal interactions between the PV collector and the building. The influence of the type of integration upon the PV collector efficiency has been evaluated and hybrid PV/air collectors have been studied. An overall efficiency is defined, including the production of electricity and heat. A case study has been performed on two different typical buildings. In the case of a multi-crystalline silicon PV collector integrated on the roof of a single family house located in Paris, the efficiency of unventilated PV modules fixed on the roof is 14%. If the PV collector is used to preheat the ventilation air, the efficiency reaches 20%. A proper building integration also improves the environmental balance of PV technologies over their life cycle.
机译:已经开发了用于构建集成光伏系统的模型,并在动态仿真工具中实现了该模型。该工具考虑了光伏收集器与建筑物之间的热相互作用。评估了集成类型对PV集热器效率的影响,并研究了混合PV /空气集热器。确定了整体效率,包括电和热的产生。在两个不同的典型建筑上进行了案例研究。如果将多晶硅光伏集热器集成在位于巴黎的单个家庭住宅的屋顶上,则固定在屋顶上的不通风的光伏模块的效率为14%。如果使用PV集热器预热通风空气,效率将达到20%。适当的建筑集成还可以改善光伏技术在其生命周期中的环境平衡。

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