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Effect of corrugated wall combined with backward-facing step channel on fluid flow and heat transfer

机译:瓦楞壁与背面的步进通道相结合对流体流动和热传递的影响

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摘要

The turbulent fluid flow and heat transfer were numerically studied through backward-facing step combined with various corrugated walls. The governing equation was solved using Finite Volume Method (FVM) and the SIMPLE algorithm was applied to investigate the effect of backward-facing step with corrugated downstream on heat transfer characteristics. A constant heat flux was applied on the downstream wall, while the other walls were considered as adiabatic surfaces. Parameters such as corrugated design, amplitude height (1, 2, 3,4 and 5 mm) and Reynolds number (Re) in the range of 5000 to 20,000 were used. The performance evaluation criteria (PEC) were estimated to show the heat transfer augmentation. The results indicated that using a corrugated wall with a backward-facing step increased significantly the heat transfer accompanied by a slight increase in the skin friction coefficient simultaneously. The best heat transfer augmentation was observed for the trapezoidal corrugation at 4 mm amplitude height and 20 mm pitch diameter. Combining the corrugated wall with backward-facing step enhanced the Nusselt number (Nu) up to 62% at Re = 5000. The performance evaluation criteria increased with the increase of amplitude height until it reached 4 mm and then decreased steeply.
机译:通过与各种波纹壁组合的后朝的阶梯来数量地研究湍流流体流动和传热。使用有限体积法(FVM)解决了控制方程,并应用了简单的算法来研究反向面对面的下游对热传递特性的影响。在下游壁上施加恒定的热通量,而另一壁被认为是绝热表面。使用瓦楞设计,幅度高度(1,2,3,4和5mm)等参数,使用5000至20,000的雷诺数(RE)。估计性能评估标准(PEC)显示传热增强。结果表明,使用朝向阶梯的波纹壁显着增加热传递同时伴随皮肤摩擦系数的略微增加。在4mm振幅高度和20mm间距直径下观察到梯形波纹的最佳热传递增强。将波纹壁与后向步骤组合在重新= 5000处增强了较高达62%的露珠数(nu)。随着振幅高度的增加,直到它达到4毫米,然后急剧下降。

著录项

  • 来源
    《Energy》 |2020年第1期|116294.1-116294.10|共10页
  • 作者单位

    Aerodynamic Heat Transfer and Propulsion Croup Department of Aerospace Engineering Faculty of Engineering Universiti Putra Malaysia 43400 Serdang Selangor Malaysia;

    Aerodynamic Heat Transfer and Propulsion Croup Department of Aerospace Engineering Faculty of Engineering Universiti Putra Malaysia 43400 Serdang Selangor Malaysia Aerospace Malaysia Research Centre Faculty of Engineering Universiti Putra Malaysia 43400 Serdang Selangor Malaysia;

    Department of Thermal and Fluids Engineering Carlos III University of Madrid Avda. de la Universidad 30 28911 Leganes Madrid Spain;

    Aerospace Malaysia Research Centre Faculty of Engineering Universiti Putra Malaysia 43400 Serdang Selangor Malaysia;

    Aerodynamic Heat Transfer and Propulsion Croup Department of Aerospace Engineering Faculty of Engineering Universiti Putra Malaysia 43400 Serdang Selangor Malaysia Aerospace Malaysia Research Centre Faculty of Engineering Universiti Putra Malaysia 43400 Serdang Selangor Malaysia;

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

    Backward-facing step; Corrugated wall; Fluid flow; Heat transfer enhancement;

    机译:背面的步骤;瓦楞墙;流体流动;传热增强;

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