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Energy saving potential of semi-transparent photovoltaic elements for building integration

机译:用于建筑物集成的半透明光伏元件的节能潜力

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摘要

Within the building energy saving strategies, BIPV (building integrated photovoltaic systems) present a promising potential based on the close relationship existing between these multifunctional systems and the overall building energy balance. Building integration of STPV (semi-transparent photovoltaic) elements affects deeply the building energy demand since it influences the heating, cooling and lighting loads as well as the local electricity generation. This work analyses over different window-to-wall ratios the overall energy performance of five STPV elements, each element having a specific degree of transparency, in order to assess the energy saving potential compared to a conventional solar control glass compliant with the local technical standard. The prior optical characterization, focused to measure the spectral properties of the elements, was experimentally undertaken. The obtained data were used to perform simulations based on a reference office building using a package of specific software tools (DesignBuilder, EnergyPlus, PVsyst, and COMFEN) to take proper account of the STPV peculiarities. To evaluate the global energy performance of the STPV elements a new Energy Balance Index was formulated. The results show that for intermediate and large facade openings the energy saving potential provided by the STPV solutions ranges between 18% and 59% compared to the reference glass.
机译:在建筑物节能策略中,BIPV(建筑物集成光伏系统)基于这些多功能系统与建筑物整体能量平衡之间的紧密关系,具有广阔的发展潜力。 STPV(半透明光伏)元件的建筑集成会严重影响建筑的能源需求,因为它会影响供暖,制冷和照明负荷以及当地的发电量。这项工作以不同的窗墙比分析了五个STPV元素的整体能量性能,每个元素具有特定的透明度,以便评估与符合当地技术标准的常规日光控制玻璃相比的节能潜力。实验上进行了先前的光学表征,重点是测量元素的光谱特性。所获得的数据用于使用一整套特定软件工具(DesignBuilder,EnergyPlus,PVsyst和COMFEN)基于参考办公楼进行模拟,以适当考虑STPV的特殊性。为了评估STPV元素的全球能源绩效,制定了新的能源平衡指数。结果表明,对于中型和大型立面开口,与参考玻璃相比,STPV解决方案提供的节能潜力在18%至59%之间。

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