Internal active cooling of a crystalline silicon photovoltaic module: Development of a modeling framework

IF 6 2区 工程技术 Q2 ENERGY & FUELS
Juhi Singh, Mohan Aditya Sabbineni, Ravi P. Jaiswal
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引用次数: 0

Abstract

Renewable energy sources are experiencing a resurgence in popularity due to growing environmental concerns. Solar technologies are the best renewable energy alternatives for meeting ever-increasing energy demand. The photovoltaic (PV) modules installed in a solar power plant get heated up quickly, resulting in significant reduction in their operating efficiency. This paper presents a mathematical model and its validation for a novel 'internal' active cooling mechanism, proposed elsewhere, for lowering the temperature of a crystalline silicon PV module. Specifically, a 3D mathematical model using COMSOL Multiphysics® software was developed to predict a silicon solar cell's temperature for conventional external and proposed internal cooling methods. The developed model was validated with the experimental data borrowed from the patent application (no. 202211050095). When compared to external air convection at a flow rate of 2 m/s, the proposed internal cooling method reduced the temperature of a Si solar cell by at least 5 °C. Finally, an economic analysis revealed that internal cooling could result in a 9.6 % net gain in the output of a solar power plant, compared to the 4.6 % net gain offered by external air cooling.

Abstract Image

晶体硅光伏组件的内部主动冷却:建模框架的开发
由于日益增长的环境问题,可再生能源正在重新受到欢迎。太阳能技术是满足日益增长的能源需求的最佳可再生能源替代品。安装在太阳能发电厂的光伏(PV)模块会迅速升温,导致其运行效率显著降低。本文提出了一种新的“内部”主动冷却机制的数学模型及其验证,该机制在其他地方提出,用于降低晶体硅光伏组件的温度。具体来说,使用COMSOL Multiphysics®软件开发了一个3D数学模型,以预测传统外部冷却方法和拟议的内部冷却方法下硅太阳能电池的温度。利用专利申请的实验数据对所建立的模型进行了验证。202211050095)。与流量为2 m/s的外部空气对流相比,所提出的内部冷却方法使硅太阳能电池的温度降低了至少5℃。最后,一项经济分析显示,与外部空气冷却提供的4.6%的净收益相比,内部冷却可以使太阳能发电厂的输出净收益达到9.6%。
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
Solar Energy
Solar Energy 工程技术-能源与燃料
CiteScore
13.90
自引率
9.00%
发文量
0
审稿时长
47 days
期刊介绍: Solar Energy welcomes manuscripts presenting information not previously published in journals on any aspect of solar energy research, development, application, measurement or policy. The term "solar energy" in this context includes the indirect uses such as wind energy and biomass
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