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Comparison of energy performance between PV double skin facades and PV insulating glass units

机译:光伏双层玻璃幕墙与光伏中空玻璃组件的能源性能比较

摘要

Building-integrated photovoltaic (BIPV) windows provide the benefits of generating electricity, reducing building cooling and heating energy consumption, and efficiently utilizing daylight simultaneously. In this paper, the overall energy performance of a PV double skin facade (PV-DSF) and a PV insulating glass unit (PV-IGU) is studied through comparative experiments on a test rig in Hong Kong. The PV-DSF means ventilated PV-DSF by default, if not special mentioned. It is found that the average solar heat gain coefficients (SHGCs) of the PV-DSF and the PV-IGU are 0.152 and 0.238, while the U-values are 2.535 W/m(2) K and 2.281 W/m(2) K. The results indicate that the PV-DSF has better performance than PV-IGU in reducing solar heat gains, while it has worse performance regarding thermal insulation. With a lower PV module temperature, the energy conversion efficiency of PV-DSF is 1.8% better than PV-IGU. Simulation models for the PV-DSF and the PV-IGU are developed and validated against experimental data. Using the validated models, the overall energy performances of PV-DSF and PV-IGU in five different climates of China are investigated. The results show that the average energy saving potential of the PV-DSF and the PV-IGU are 28.4% and 30%, respectively, compared to the commonly used insulating glass window in five different climates. On average, the performance of PV-IGU was 2% better performance than the ventilated PV-DSF in the five representative cities. However, if an appropriate ventilation control scheme was adopted, PV-DSF can have a much better performance than the PV-IGU. The models developed in this study can be used for selecting suitable PV windows in the design process, and the results achieved can be used as a guideline for utilizing PV windows in different climates.
机译:建筑物集成光伏(BIPV)窗具有发电,减少建筑物制冷和供暖能耗以及同时有效利用日光的优势。本文通过在香港的试验台上进行对比实验,研究了PV双层玻璃幕墙(PV-DSF)和PV绝缘玻璃组件(PV-IGU)的总体能源性能。如果没有特别说明,默认情况下,PV-DSF表示通风的PV-DSF。发现PV-DSF和PV-IGU的平均太阳热增益系数(SHGC)为0.152和0.238,而U值为2.535 W / m(2)K和2.281 W / m(2) K.结果表明,PV-DSF在减少太阳热能方面的性能优于PV-IGU,而在隔热方面却表现较差。 PV模块温度较低时,PV-DSF的能量转换效率比PV-IGU高1.8%。开发了PV-DSF和PV-IGU的仿真模型,并根据实验数据进行了验证。使用经过验证的模型,研究了中国五种不同气候条件下PV-DSF和PV-IGU的总体能源性能。结果表明,与五种不同气候下常用的隔热玻璃窗相比,PV-DSF和PV-IGU的平均节能潜力分别为28.4%和30%。平均而言,在五个代表城市中,PV-IGU的性能比通风的PV-DSF好2%。但是,如果采用适当的通风控制方案,PV-DSF的性能将比PV-IGU好得多。本研究开发的模型可用于在设计过程中选择合适的PV窗,所获得的结果可作为在不同气候下利用PV窗的指南。

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