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Turbulent Heat Transfer Enhancement in a Triangular Duct Using Delta-Winglet Vortex Generators

机译:使用三角翼小涡流发生器增强三角形管道中的湍流传热

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摘要

The augmentation of convective heat transfer of a turbulent flow using delta-winglet vortex generators (VG) in a triangular duct was experimentally investigated. Two side walls of the heated test section are electrically heated with a constant heat flux while the lower wall is indirectly heated. Single, double, and triple pairs of VG are utilized. Each pair of VG was punched on one wall of the test duct. The effects of the number of VG pairs, the VG angle of attack, the VG location from the leading edge of the lest duct, the VG geometry, and Reynolds number are examined in this paper. The results indicate that the Nusselt number and friction factor are relatively proportional to the size, number, and the inclination angle of the VG. The Nusselt number increases and the friction factor decreases as the Reynolds number increases. The present results were compared with the available literature and they show good agreement. Correlation equations of Nusselt number and friction factor for turbulent flow are developed, for the cases studied, as a function of Reynolds number and VG angle of attack.
机译:实验研究了三角管中使用三角翼小涡流发生器(VG)增强湍流对流换热的特性。加热的测试部分的两个侧壁以恒定的热通量进行电加热,而下壁则被间接加热。利用单,双和三对VG。每对VG都在测试管道的一壁上打孔。本文研究了VG对的数量,VG迎角,从风道前缘开始的VG位置,VG几何形状和雷诺数的影响。结果表明,Nusselt数和摩擦系数与VG的大小,数量和倾斜角度成正比。随着雷诺数的增加,努塞尔数增加,摩擦系数减小。目前的结果与现有文献进行了比较,它们显示出很好的一致性。在所研究的情况下,根据雷诺数和VG迎角,建立了湍流的努塞尔数和摩擦因数的相关方程。

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