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Investigation of building integrated photovoltaics potential in achieving the zero energy building target

机译:关于实现零能耗建筑目标的建筑光伏综合潜力的研究

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Since the photovoltaic (PV) scientific community started exploring innovative ways of incorporating solar electricity into buildings, a whole new vernacular of solar electric architecture emerged. Currently, there is a growing consensus that building integrated photovoltaics (BIPV) systems will be the backbone of the zero energy building (ZEB) European target by 2020, through their widespread commercialization. BIPV systems often produce however less energy than conventional PV systems due to architectural constraints in the design of BIPV arrays. This paper presents a conceptual study regarding the energy yield and feasibility of BIPVs in several locations in Europe. Specific conclusions on the energy yield and economic feasibility of BIPVs with regard to the implemented PV module technology, the climatic zone, the orientation of the building and the mounting disposition are drawn. The findings of this work that were also validated using hourly time step computational analysis, reveal the necessary conditions under which BIPVs could have a major contribution to fulfilling the European 2020 targets by enabling the achievement of the ZEB goal.
机译:自光伏(PV)科学界开始探索将太阳能纳入建筑物的创新方法之后,出现了一种全新的太阳能建筑体系。当前,越来越多的共识是,通过广泛的商业化,到2020年,建筑集成光伏(BIPV)系统将成为欧洲零能耗建筑(ZEB)目标的中坚力量。然而,由于BIPV阵列设计中的架构限制,BIPV系统通常比传统的PV系统产生更少的能量。本文介绍了有关欧洲多个地区BIPV的能源产量和可行性的概念研究。就已实施的光伏组件技术,气候区,建筑物的方向和安装位置等方面,得出了关于BIPV的能源产量和经济可行性的具体结论。这项工作的发现也得到了每小时时间步长计算分析的验证,揭示了BIPV可以通过实现ZEB目标而对实现欧洲2020年目标做出重大贡献的必要条件。

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