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Improving energy and visual performance in offices using building integrated perovskite-based solar cells: A case study in Southern Italy

机译:使用基于钙钛矿的集成太阳能电池改善办公室的能源和视觉性能:意大利南部的案例研究

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摘要

Building integration of innovative photovoltaic technologies, defined by high efficiency and optical properties allowing their use as a replacement of solar control films, offers new opportunities for energy saving. In order to estimate this potential under real world conditions, we have carried out simulations for this scenario based on an existing office building located in Bari (Italy). The building has a significant amount of transparent surfaces combined with transparent shades, while office layout corresponds to a typical Mediterranean configuration with several single/double offices (2.9 m by 6.6 m). We investigate the effect of the replacement of standard clear glass windows with new windows integrating perovskite-based semi-transparent photovoltaic modules, and the replacement of the original transparent shading system with high performance opaque perovskite-perovskite tandem cells. In particular, the attributes that were directly influenced by the proposed modifications were investigated in detail, including overall energy consumption for heating, air conditioning, and artificial lighting, evaluated against the overall energy yield given by building-integrated photovoltaic modules. Results showed that under ideal conditions (no obstructing buildings) yearly savings up to 18% could be obtained. In presence of nearby buildings savings dropped to 14%. Considering that fabrication costs for this technology are promisingly low and that this is currently the only neutral colored semi-transparent photovoltaic, the above results are promising, particularly for buildings with large window-to-wall ratios.
机译:创新的光伏技术的建筑集成,以高效率和光学特性为特征,允许将其用作太阳能控制膜的替代品,为节能提供了新的机遇。为了估算现实条件下的这种潜力,我们基于位于意大利巴里的现有办公楼对这种情况进行了模拟。该建筑具有大量透明表面和透明阴影,而办公室布局则对应于典型的地中海式配置,有多个单/双办公室(2.9 m x 6.6 m)。我们研究了用集成基于钙钛矿的半透明光伏模块的新窗户替换标准透明玻璃窗的效果,以及用高性能不透明钙钛矿-钙钛矿串联电池替换原始透明遮光系统的效果。特别是,详细研究了直接受到提议的修改影响的属性,包括供暖,空调和人工照明的总能耗,并根据建筑物集成光伏模块给出的总能耗进行了评估。结果表明,在理想条件下(无障碍建筑物),每年最多可以节省18%。在附近建筑物的存在下,储蓄下降到14%。考虑到该技术的制造成本有望降低并且目前是唯一的中性色半透明光伏电池,上述结果是有希望的,尤其是对于具有较大的墙墙比的建筑物而言。

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