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The balance between aesthetics and performance in building-integrated photovoltaics in the tropics

机译:热带地区建筑一体化光伏的美学与性能之间的平衡

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This paper aims at investigating if the balance between aesthetics and performance in building-integrated photovoltaic (BIPV) systems is possible to be achieved in the tropics. To accomplish this objective, three BIPV systems located in Singapore with photovoltaic (PV) systems playing an aesthetically appealing role in their architecture were analysed in detail for a 1-year period. The systems were analysed regarding the available solar irradiation, the shading profiles and the resulting yield and performance ratio (PR) in order to compare the performance of different subsystems with variable architectural characteristics and string configurations. All systems are partially shaded in the early morning or late afternoon, a common situation inherent to BIPV systems. Results show that even with a theoretical non-optimal combination of azimuthal deviations and tilt angles, some PV systems show better performances in terms of yield and PR than those which are installed at more ideal conditions. The high ratio of diffuse irradiation in Singapore, the distance of shading obstacles and times when shading occurs and the subsystem and string configurations strongly influence the systems performance results. With the declining costs of PV systems, BIPV can offer attractive solutions with high integration appeal, architectural sophistication and the promotion of sustainable energy supply. In the tropics, rooftop BIPV systems can perform with relatively small losses and be aesthetically appealing when compared with optimally tilted and oriented PV generators.
机译:本文旨在研究在热带地区是否可以在建筑集成光伏(BIPV)系统中实现美学与性能之间的平衡。为了实现这一目标,在1年的时间里,对位于新加坡的三个BIPV系统及其在建筑中起着美学吸引力的光伏(PV)系统进行了详细分析。分析了系统的可用太阳辐射,阴影轮廓以及所产生的成品率和性能比(PR),以便比较具有可变建筑特征和弦配置的不同子系统的性能。 BIPV系统固有的一种常见情况是,所有系统在清晨或下午晚些时候都被部分遮挡。结果表明,即使使用理论上的方位角偏差和倾斜角的非最佳组合,与在更理想条件下安装的光伏系统相比,某些光伏系统在产量和PR方面也表现出更好的性能。在新加坡,高辐射率,遮光障碍物的距离以及遮光发生的时间以及子系统和弦的配置强烈影响系统性能结果。随着光伏系统成本的下降,BIPV可以提供具有吸引力的解决方案,具有高度的集成吸引力,复杂的建筑结构和促进可持续能源供应。在热带地区,与最佳倾斜和定向的PV发电机相比,屋顶BIPV系统的性能损失相对较小,并且在美学上具有吸引力。

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