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An Experimental and Numerical Investigation of Photovoltaic Module Temperature Under Varying Environmental Conditions

机译:不同环境条件下光伏模块温度的实验性和数值研究

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摘要

The photovoltaic module temperature depends on many parameters and becomes an important parameter from the system efficiency point of view. For this reason, in this research, a comprehensive analysis of the photovoltaic modules has been done using in-situ experimental measurement and computer simulation. The objective of the current work is to model the fluid flow and heat transfer from a photovoltaic module, by means of three-dimensional numerical simulation to determine the module temperature. The photovoltaic module with the variable inclination was subjected to variable environmental and operating conditions. The results of the analysis show that module temperature isn't only ambient temperature and solar radiation dependent like what is taken into account by many models but also depends on wind speed and wind direction. It has been found that the mounting conditions which are not taken into consideration by most of the literature models, play an important role and only this fact may introduce an additional increase in module temperature about 10-15 °C and may decrease module efficiency more them 4-6.5%. The results that were obtained enable the development of a model for the photovoltaic module temperature caused by the environmental conditions as well as mounting conditions.
机译:光伏模块温度取决于许多参数,并成为来自系统效率的重要性的重要参数。因此,在本研究中,使用原位实验测量和计算机模拟已经完成了对光伏模块的综合分析。目前工作的目的是通过三维数值模拟来模拟从光伏模块的流体流动和热传递,以确定模块温度。具有可变倾斜度的光伏模块经受可变的环境和操作条件。分析的结果表明,模块温度不仅环境温度和太阳辐射依赖像什么是由许多模型考虑也取决于风速和风向。已经发现,由于大多数文献模型,不考虑的安装条件,起到重要作用,并且只有这一事实可能会引入大约10-15°C的模块温度额外增加,并且可能会降低模块效率4-6.5%。获得的结果使得通过环境条件和安装条件引起的光伏模块温度的模型能够开发模型。

著录项

  • 来源
    《Heat Transfer Engineering 》 |2021年第5期| 354-367| 共14页
  • 作者单位

    Faculty of Energy and Fuels AGH University of Science and Technology Krakow Poland;

    Faculty of Electrical Engineering Automatics Computer Science and Biomedical Engineering AGH University of Science and Technology Krakow Poland;

    Faculty of Energy and Fuels AGH University of Science and Technology Krakow Poland Department of Mechanical Engineering University of Diyala Diyala Iraq;

    Faculty of Energy and Fuels AGH University of Science and Technology Krakow Poland;

    Faculty of Electrical and Computer Engineering Rzeszow University of Technology Rzeszow Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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