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首页> 外文期刊>The Archive of Mechanical Engineering >Evaluation of thermal performance factor for solar air heaters with artificially roughened channels
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Evaluation of thermal performance factor for solar air heaters with artificially roughened channels

机译:具有人工粗糙通道的太阳能空气加热器热性能因子评价

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摘要

Heat transfer augmentation has become the utmost industrial desire. Turbulence promoters seems to be a better option for better heat transfer but at the expense of enormous pressure drop. In the current study, experimental optimization of heat transfer and pressure drop in various configurations of ribbed and corrugated surfaces on the bottom wall of the Solar Air Heater channel, having aspect ratio of 26:5 was performed. The results were evaluated in terms of enhancement in heat transfer (Nu/Nu_s), friction factor ratio (f/f_s) and thermal performance factor (η). Three different cases and nine configurations with a pitch to rib/corrugation height ratio of 4.0 were studied. Case A consists of a smooth, continuous square rib, inline and staggered broken ribs. Case B comprises 30°, 45°, 60° and 90° trapezoidal corrugated geometries while case C is the comparison of smooth, wavy corrugated and the best configurations of cases A and B. The results show that rectangular duct with staggered broken ribs and trapezoidal corrugation at 45° are the best configurations for case A and B, respectively. The 45° corrugated configuration is the best one amongst all, with values of 1.53, 1.5 and 1.33% for Nu/Nu_s, f/f_s and η respectively.
机译:传热增强已成为最大的工业欲望。湍流促进剂似乎是更好的热传递的更好选择,但以巨大的压降为代价。在目前的研究中,在太阳能空气加热器通道的底壁上的罗纹和波纹表面的各种构造中的传热和压降的实验优化,具有纵横比为26:5。在传热(NU / NU_S)的增强方面评估结果,摩擦因子比(F / F_S)和热性能因子(η)。研究了三种不同的案例和九种配置,具有4.0的肋/波纹高度比为4.0。案例A由平滑,连续平方肋,内联和交错的肋骨组成。案例B包括30°,45°,60°和90°梯形波纹几何形状,而C案例C是平滑,波浪波纹和最佳案例A和B的配置的比较。结果表明,矩形管道与交错肋骨和梯形的矩形管道45°的波纹是案例A和B的最佳配置。 45°波纹配置是均有最佳的,值为1.53,1.5和1.33%,分别为Nu / Nu_s,f / f_s和η。

著录项

  • 来源
    《The Archive of Mechanical Engineering》 |2021年第2期|195-225|共31页
  • 作者单位

    Department of Mechanical Engineering Pakistan Institute of Engineering & Applied Sciences Nilore Islamabad Pakistan;

    Department of Mechanical Engineering Pakistan Institute of Engineering & Applied Sciences Nilore Islamabad Pakistan;

    Department of Nuclear Engineering Pakistan Institute of Engineering & Applied Sciences Nilore Islamabad Pakistan;

    Department of Nuclear Engineering Pakistan Institute of Engineering & Applied Sciences Nilore Islamabad Pakistan;

    Sustainable and Renewable Energy Engineering Department University of Sharjah United Arab Emirates;

    Department of Nuclear Engineering Pakistan Institute of Engineering & Applied Sciences Nilore Islamabad Pakistan;

    Department of Mechanical Engineering Pakistan Institute of Engineering & Applied Sciences Nilore Islamabad Pakistan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    turbulence promoters; solar air heater; heat transfer enhancement; thermal performance factor;

    机译:湍流启动子;太阳能加热器;传热增强;热性能因子;

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