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Effect of the angle of attack of a rectangular wing on the heat transfer enhancement in channel flow at low Reynolds number

机译:低雷诺数下矩形翼的迎角对通道内传热增强的影响

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摘要

Convective heat transfer enhancement can be achieved by generating secondary flow structures that are added to the main flow to intensify the fluid exchange between hot and cold regions. One method involves the use of vortex generators to produce streamwise and transverse vortices superimposed to the main flow. This study presents numerical computation results of laminar convection heat transfer in a rectangular channel whose bottom wall is equipped with one row of rectangular wing vortex generators. The governing equations are solved using finite volume method by considering steady state, laminar regime and incompressible flow. Three-dimensional numerical simulations are performed to study the effect of the angle of attack α of the wing on heat transfer and pressure drop. Different values are taken into consideration within the range 0° <  α <  30 °. For all of these geometrical configurations the Reynolds number is maintained to Re  = 456 . To assess the effect of the angle of attack on the heat transfer enhancement, Nusselt number and the friction factor are studied on both local and global perspectives. Also, the location of the generated vortices within the channel is studied, as well as their effect on the heat transfer enhancement throughout the channel for all α values . Based on both local and global analysis, our results show that the angle of attack α has a direct impact on the heat transfer enhancement. By increasing its value, it leads to better enhancement until an optimal value is reached, beyond which the thermal performances decrease.
机译:对流传热的增强可以通过产生添加到主流中的二级流结构来实现,以增强热区和冷区之间的流体交换。一种方法涉及使用涡流发生器产生叠加在主流上的沿流和横向的涡流。本研究给出了矩形通道内层流对流换热的数值计算结果,该矩形通道的底壁装有一排矩形翼涡流发生器。考虑到稳态,层流状态和不可压缩流动,使用有限体积法求解控制方程。进行了三维数值模拟,以研究机翼迎角α对传热和压降的影响。在0°<α<30°范围内考虑不同的值。对于所有这些几何构型,雷诺数保持为Re Re = 456。为了评估迎角对传热增强的影响,从局部和全局角度研究了努塞尔数和摩擦系数。此外,还研究了通道内生成的涡流的位置,以及它们对于所有α值对整个通道内传热增强的影响。基于局部和整体分析,我们的结果表明,迎角α对传热的增强有直接影响。通过增加其值,它会导致更好的增强效果,直到达到最佳值为止,超过此值,热性能会下降。

著录项

  • 来源
    《Heat and mass transfer》 |2018年第5期|1441-1452|共12页
  • 作者单位

    IMT Lille Douai, Industrial Energy Department,Mechanical Engineering Department, Lebanese International University LIU;

    Mechanical Engineering Department, Notre Dame University - Louaize NDU;

    IMT Lille Douai, Industrial Energy Department;

    IMT Lille Douai, Industrial Energy Department;

    ISTIA, LARIS, Université d’Angers;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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