Experimental evaluation of the impact of pigment-based colored interlayers on the temperature of BIPV modules

IF 1.9 Q3 PHYSICS, APPLIED EPJ Photovoltaics Pub Date : 2023-01-01 DOI:10.1051/epjpv/2023028
Markus Babin, Ingvar Haukur Jóhannsson, Michael Linde Jakobsen, Sune Thorsteinsson
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Abstract

While colored photovoltaics are gaining popularity in the market for building-integrated photovoltaics (BIPV), several specific properties are not accounted for in standard PV performance models. This work shows how relying on the coloration efficiency alone can lead to significant errors regarding module temperatures. By comparing measured temperature data from a test installation featuring BIPV façade elements in multiple colors, little correlation is found between total optical losses (reflection and absorption losses) and module temperature. Instead, better correlation is found with total reflectance. This is attributed to the light absorbed in the pigment-based colored layers contributing to module heating, whereas reflected light does not. This is especially relevant for colors with high lightness, such as gray or beige, for which reflection losses are dominating absorption losses. When modelling colored BIPV products, it is therefore recommended to only consider reflection losses for the irradiance contributing to module heating, while continuing to also include absorption losses for the effective irradiance used in electrical performance modelling.
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基于色素的彩色夹层对BIPV组件温度影响的实验评估
虽然彩色光伏在建筑集成光伏(BIPV)市场上越来越受欢迎,但在标准的光伏性能模型中没有考虑到一些特定的性能。这项工作表明,仅依靠显色效率如何导致模块温度方面的重大错误。通过比较具有多色BIPV面板元件的测试装置的测量温度数据,发现总光学损耗(反射和吸收损耗)与模块温度之间几乎没有相关性。相反,发现与全反射的相关性更好。这是由于基于颜料的有色层吸收的光有助于模块加热,而反射光则没有。这尤其适用于高亮度的颜色,如灰色或米色,因为它们的反射损失主要是吸收损失。因此,在为彩色BIPV产品建模时,建议只考虑导致模块加热的辐照度的反射损耗,同时继续包括电气性能建模中使用的有效辐照度的吸收损耗。
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来源期刊
EPJ Photovoltaics
EPJ Photovoltaics PHYSICS, APPLIED-
CiteScore
2.30
自引率
4.00%
发文量
15
审稿时长
8 weeks
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