Multi-layer Modeling of Bifacial Photovoltaic Panels: Evaluating the Accuracy of One-, Three-, and Five-layer Models

IF 7.1 Q1 ENERGY & FUELS
Mohammad Hassan Shahverdian , Hoseyn Sayyaadi , Ali Sohani
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引用次数: 0

Abstract

Bifacial solar panels (BSP) absorb sunlight from both sides. BSP has gained significant popularity by increasing energy efficiency and reducing the need for more space. To predict the performance of BSP, it is necessary to perform three analyzes, optical, thermal, and electrical simultaneously, because the power generated is influenced by the surface temperature and vice versa. For the thermal modeling of the BSP, the solar panel can be examined in different layers. In this study, thermal modeling is conducted in the one, three-, and five-layer models, and these models are compared with each other from the point of view of produced power and panel temperature to determine the accuracy of each approach. A BSP is considered in the climatic conditions of Tehran, Iran. Finally, the result was obtained that in the annual analysis, the amount of energy produced by the five, three, and one-layer models is 1242.2, 1244.0, and 1246.6 kWh, respectively. The variation between the five-layer and one-layer model is 0.36 %, between the three-layer and one-layer is 0.21 %, and between the five-layer and three-layer is 0.15 %. As a result, considering the model with more layers, does not necessarily increase the accuracy of the analysis, significantly.
双面太阳能电池板(BSP)从两面吸收阳光。双面太阳能电池板提高了能源效率,减少了对更多空间的需求,因此大受欢迎。要预测双面太阳能电池板的性能,必须同时进行光学、热学和电学三方面的分析,因为发电量受表面温度的影响,反之亦然。为了对 BSP 进行热建模,可以对太阳能电池板进行分层检查。在本研究中,热建模在一层、三层和五层模型中进行,并从发电功率和电池板温度的角度对这些模型进行比较,以确定每种方法的准确性。考虑了伊朗德黑兰气候条件下的 BSP。最后得出的结果是,在年度分析中,五层、三层和一层模型的发电量分别为 1242.2、1244.0 和 1246.6 千瓦时。五层模型与一层模型之间的差异为 0.36%,三层模型与一层模型之间的差异为 0.21%,五层模型与三层模型之间的差异为 0.15%。因此,考虑多层模型并不一定会显著提高分析的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.80
自引率
3.20%
发文量
180
审稿时长
58 days
期刊介绍: Energy Conversion and Management: X is the open access extension of the reputable journal Energy Conversion and Management, serving as a platform for interdisciplinary research on a wide array of critical energy subjects. The journal is dedicated to publishing original contributions and in-depth technical review articles that present groundbreaking research on topics spanning energy generation, utilization, conversion, storage, transmission, conservation, management, and sustainability. The scope of Energy Conversion and Management: X encompasses various forms of energy, including mechanical, thermal, nuclear, chemical, electromagnetic, magnetic, and electric energy. It addresses all known energy resources, highlighting both conventional sources like fossil fuels and nuclear power, as well as renewable resources such as solar, biomass, hydro, wind, geothermal, and ocean energy.
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