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Comparative study on the overall energy performance between photovoltaic and Low-E insulated glass units

机译:光伏和低电子绝缘玻璃单元整体能量性能的比较研究

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A novel semi-transparent building integrated photovoltaic (BIPV) laminate was developed and introduced in this paper. It was produced by cutting standard mono-crystalline silicon solar cells into small strips and then making electrical connections between each strip before laminating the cells between two layers of glass. The overall energy performance and energy saving potential of the BIPV insulated glass unit (IGU) under real world conditions were identified through a side by side comparative study. Compared to the reference IGU, the BIPV IGU had lower solar heat gain coefficient (SHGC) but much 2higher U-factor. The average HVAC electricity saving of the BIPV IGU was about 10% relative to the reference IGU. Daylighting measurement and analysis were carried out to evaluate the trade-offs associated with the BIPV IGU between daylight, glare, and lighting energy use. The results indicated that the BIPV IGU is better than the reference IGU in reducing discomfort glare. However, if the most conservative viewpoint near the window is used for the assessment, a lower transmittance BIPV IGU is required to bring the overall discomfort levels below the perceptible level. Lastly, the net energy saving potential associated with the novel BIPV IGU was identified based on the power, thermal and daylighting performance. On average, the BIPV IGU saved 16.8% of the total electricity use of the room. Further studies and improvement on the energy conversion efficiency of solar cells, the optimal transmittance as well as the thermal properties would make this technology more energy-efficient and affordable.
机译:本文开发并介绍了一种新型半透明建筑集成光伏(BIPV)层压板。它是通过将标准单晶硅太阳能电池切成小条,然后在每个带材之间制造电连接,然后在两层玻璃之间进行电池。通过一并侧面的比较研究确定了现实世界条件下的BIPV绝缘玻璃单元(IGU)的整体能量性能和节能潜力。与参考IGU相比,BIPV IGU具有较低的太阳能热增益系数(SHGC),但是U因素大。相对于参考IGU,BIPV IGU的平均HVAC电力节省约为10%。进行了日光测量和分析,以评估与白天,眩光和照明能源使用之间与BIPV IGU相关的权衡。结果表明,BIPV IGU优于参考IGU,减少不适眩光。但是,如果窗户附近的最保守的观点用于评估,则需要较低的透射率BIPV IGU,以使整体不可感知水平的整体不适水平。最后,基于电源,热和日光性能来识别与新型BIPV IGU相关的净节能潜力。平均而言,BIPV IGU保存了房间总电力使用的16.8%。进一步的研究和改进太阳能电池的能量转换效率,最佳透射率以及热性质将使这项技术更加节能且价格实惠。

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