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Heat Transfer Enhancement of Laminar Nanofluids Flow in a Circular Tube Fitted with Parabolic-Cut Twisted Tape Inserts

机译:具有抛物线切割扭胶带插入件的圆形管中层状纳米流体流动的热传递增强

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Numerical investigation has been carried out on heat transfer and friction factor characteristics of copper-water nanofluid flow in a constant heat-fluxed tube with the existence of new configuration of vortex generator using Computational Fluid Dynamics (CFD) simulation. Two types of swirl flow generator: Classical twisted tape (CTT) and Parabolic-cut twisted tape (PCT) with a different twist ratio (y= 2.93, 3.91 and 4.89) and different cut depth (w= 0.5, 1.0 and 1.5 cm) with 2% and 4% volume concentration of CuO nanofluid were used for simulation. The effect of different parameters such as flow Reynolds number, twist ratio, cut depth and nanofluid were considered. The results show that the enhancement of heat transfer rate and the friction factor induced by the Classical (CTT) and Parabolic-cut (PCT) inserts increases with twist ratio and cut depth decreases. The results also revealed that the heat transfer enhancement increases with an increase in the volume fraction of the CuO nanoparticle. Furthermore, the twisted tape with twist ratio (y= 2.93) and cut depthw= 0.5 cm offered 10% enhancement of the average Nusselt number with significant increases in friction factor than those of Classical twisted tape.
机译:使用计算流体动力学(CFD)模拟的涡流发生器的新配置,在恒温管中的传热和摩擦因子特性进行了数值研究。两种类型的旋流流动发生器:经典扭曲胶带(CTT)和抛物线 - 切割扭曲胶带(PCT),具有不同的捻度(Y = 2.93,3.91和4.89)和不同的切割深度(W = 0.5,1.0和1.5厘米)用2%和4%的CuO纳米流体浓度用于模拟。考虑了不同参数,例如流动雷诺数,捻度,切割深度和纳米流体的影响。结果表明,经典(CTT)和抛物线切割(PCT)插入件的传热速率和摩擦因子的增强随着捻度和切割深度降低而增加。结果还表明,传热增强随CuO纳米粒子的体积分数的增加而增加。此外,具有扭曲比(Y = 2.93)的扭曲带和切割深度= 0.5cm,提供了10%的纽带数提高了摩擦系数显着增加,而不是经典扭曲的胶带。

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