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G-Value Indoor characterization of semi-transparent photovoltaic elements for building integration: New equipment and methodology

机译:用于建筑物集成的半透明光伏元件的G值室内表征:新设备和方法

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摘要

Whereas the modern architecture trends to an extensive use of glazing elements, buildings are increasingly required to minimize the external energy demand, cutting down the energy needed and covering the residual demand using local energy generation solutions. In this context, the integration of optimized Semi- Transparent Photovoltaic (STPV) elements seems to present a promising energy saving potential, leading to significant reductions of the heating, cooling and lighting loads while the on-site electricity generation is supplied. In mild climate areas, building glazings are required to perform as solar control systems with a low solar factor in order to avoid overheating. However, g-value is frequently unavailable in the data sheet of the STPV elements, making it difficult to design the optimal building solution. In the present work, an indoor testing facility to analyze the solar factor of STPV elements has been further developed and validated. The operating principles of the calorimetric system as well as the experimental data obtained in the validation stage are presented. Results show that the system accuracy and sensitivity are fully adequate to perform detailed analyses of the solar factor of STPV glazings. Furthermore, g-value variations with the transparency degree have been analyzed over different electrical operating points.
机译:尽管现代建筑趋向于大量使用玻璃元件,但越来越需要建筑物以最小化外部能源需求,减少所需能源并使用本地能源产生解决方案来满足剩余需求。在这种情况下,优化的半透明光伏(STPV)元件的集成似乎具有广阔的节能潜力,从而可以在现场供电的同时显着降低供暖,制冷和照明负荷。在气候温和的地区,为了防止过热,需要将建筑玻璃用作太阳辐射系数低的太阳控制系统。但是,STPV元素的数据表中经常没有g值,这使得设计最佳的建筑解决方案变得困难。在目前的工作中,用于分析STPV元素太阳因子的室内测试设备已经得到进一步开发和验证。介绍了量热系统的工作原理以及在验证阶段获得的实验数据。结果表明,该系统的精度和灵敏度完全足以对STPV玻璃的日晒因子进行详细分析。此外,已经分析了在不同电操作点上具有透明度的g值变化。

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