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Comparative study of the thermal and power performances of a semi-transparent photovoltaic facade under different ventilation modes

机译:半透明光伏立面在不同通风方式下的热电性能比较研究

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This paper studied the thermal and power performances of a ventilated photovoltaic facade under different ventilation modes, and appropriate operation strategies for different weather conditions were proposed accordingly to maximize its energy conversion efficiency. This ventilated PV double-skin facade (PV-DSF) consists of an outside layer of semi-transparent amorphous silicon (a-Si) PV laminate, an inward-openable window and a 400 mm airflow cavity. Before installation, the electrical characteristics under standard testing conditions (STC) and the temperature coefficients of the semi-transparent PV module were tested and determined in the laboratory. Field measurements were carried out to investigate the impact of different ventilation modes, namely, ventilated, buoyancy-driven ventilated and non-ventilated, on the thermal and power performances of this PV-DSF. The results show that the ventilated PV-DSF provides the lowest average solar heat gain coefficient (SHGC) and the non-ventilated PV-DSF provides the best thermal insulation performance. In terms of power performance, the energy output of the ventilated PV-DSF is greater than those of the buoyancy-driven ventilated and non-ventilated PV-DSFs by 1.9% and 3%, respectively, due to its much lower operating temperature. Based on the experimental results, a conclusion was drawn that the ventilation design can not only reduce the heat gain of PV-DSF but also improve the energy conversion efficiency of PV modules by bringing down their operating temperature. In addition, an optimum operation strategy is recommended for this kind of PV-DSF to maximize its overall energy efficiency under different weather conditions. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文研究了通风的光伏立面在不同通风方式下的热和功率性能,并针对不同的天气条件提出了适当的运行策略,以最大化其能量转换效率。通风的PV双层皮肤外墙(PV-DSF)由半透明非晶硅(a-Si)PV层压板的外层,向内可打开的窗户和400毫米的气流腔组成。在安装之前,在实验室中测试并确定了标准测试条件(STC)下的电气特性和半透明PV组件的温度系数。进行了现场测量,以研究不同通风模式(即通风,浮力驱动的通风和非通风)对该PV-DSF的热性能和功率性能的影响。结果表明,通风的PV-DSF提供最低的平均太阳热增益系数(SHGC),而非通风的PV-DSF提供最佳的隔热性能。就功率性能而言,由于其运行温度低得多,通风的PV-DSF的能量输出分别比浮力驱动的通风和非通风的PV-DSF的能量输出分别高1.9%和3%。根据实验结果,得出的结论是,通风设计不仅可以降低PV-DSF的热增益,而且可以通过降低其工作温度来提高其能量转换效率。此外,对于这种PV-DSF,建议采用最佳运行策略,以在不同天气条件下最大化其整体能效。 (C)2014 Elsevier Ltd.保留所有权利。

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