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Thermal Model in ANSYS for a Comparison Between two Configurations of a Concentrating Photovoltaic System

机译:ANSYS中的热模型,用于浓缩光伏系统的两种配置之间的比较

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摘要

The theoretical analysis of different concentrating photovoltaic and thermal systems (CPV/T) is presented in this paper; it allows to evaluate the cooling fluid temperature in different working conditions. In particular, two CPV/T systems with different optics, line-focus and point-focus, are studied and compared theoretically by means of a model developed in ANSYS-CFX able to evaluate the theoretical temperature values of the fluid that flows in the cooling circuit, designed with the Solidworks software. The comparison in terms of the thermal performances between the point-focus and line-focus configurations of a CPV/T system has been realized considering different working conditions. As model input the uniform cell temperature has been set to different values, included between 323 K and 363 K, or determined experimentally referring to the point-focus configuration. In particular, the outlet temperatures of the cooling fluid, the fluid and cells temperatures difference at the outlet section, the time necessary to reach a steady-state condition, the fluid temperature trend in different parts of the tube and along the circuit, have been evaluated. Moreover, the fluid temperature trend has been studied varying the fluid velocity, its mass flow rate, and the insulation thickness. Finally, the point-focus CPV/T system thermal performances have been also evaluated adopting some experimental measurements as input data; the fluid temperature trend has been tested under a variable cell temperature during different hours of a sunny and a cloudy day.
机译:本文提出了不同浓缩光伏和热系统(CPV / T)的理论分析;它允许在不同的工作条件下评估冷却液温度。特别地,通过在ANSYS-CFX中开发的模型来研究并与能够评估在冷却中流动的流体的理论温度值的模型进行研究,并将其学习了两个具有不同光学,线 - 焦点和点对焦的CPV / T系统。电路,使用SolidWorks软件设计。考虑到不同的工作条件,已经实现了在CPV / T系统的点对焦和线焦点配置之间的热性能方面的比较。由于模型输入,均匀的电池温度已经设定为不同的值,包括在323k和363k之间,或者通过实验地指的是点对焦配置来确定。特别地,冷却流体的出口温度,流体和电池温度在出口部分的差异,达到稳态条件所需的时间,流体温度趋势在管和沿着电路的不同部位,已经评估。此外,已经研究了流体温度趋势,改变了流体速度,其质量流量和绝缘厚度。最后,还评估了点对焦CPV / T系统热性能,采用一些实验测量作为输入数据;在阳光明媚的不同小时和阴天的不同小时内,在可变的细胞温度下测试了流体温度趋势。

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  • 来源
    《Heat Transfer Engineering》 |2019年第12期|924-940|共17页
  • 作者单位

    Univ Salerno Dept Ind Engn Via Giovanni Paolo II 132 I-84084 Salerno Italy;

    Univ Salerno Dept Ind Engn Via Giovanni Paolo II 132 I-84084 Salerno Italy;

    Univ Salerno Dept Ind Engn Via Giovanni Paolo II 132 I-84084 Salerno Italy;

  • 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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