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CFD Simulation of Heat Transfer and Friction Factor Augmentation in a Circular Tube Fitted with Elliptic-Cut Twisted Tape Inserts

机译:CFD仿真在配有椭圆形扭转胶带插入件的圆管中的传热和摩擦因子增强

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摘要

This paper presents the application of a mathematical model for simulation of the swirling flow in a tube induced by elliptic-cut and classical twist tape inserts. Effects of the twist ratio (y=2.93, 3.91, and 4.89) and cut depth (w=0.4, 0.8, and 1.4 cm) on heat transfer enhancement (Nu) and friction factor (f) in laminar flow are numerically investigated. The simulation is carried out using commercial CFD package (FLUENT-6.3.26) to grasp the physical behaviour of the thermal and fluid flows of a constant heat-fluxed tube fitted with elliptic-cut twist tape in the laminar flow regime for the Reynolds number ranging from 200 to 2100. The simulated results matched the literature correlations of plain tube for validation with 8% variation for Nusselt number and 10% for friction factor. The results show that the heat transfer rate and friction factor in the tube equipped with elliptic-cut twist tape (ECT) are significantly higher than those fitted with classical twist tape (CTT). Moreover the results also reveal that the Nusselt number and the friction factor in the tube with elliptic-cut twisted tape (ECT) increase with decreasing twist ratios (y) and cut depths (w).
机译:本文介绍了椭圆形切割诱导的管中旋转流动模拟的数学模型和典型扭曲胶带插入件的应用。在数值上研究了捻度(y = 2.93,3.91和4.89)和切割深度(W = 0.4,0.8和1.4cm)的切割深度(w = 0.4,0.8和1.4cm),并在层流中的摩擦系数(f)进行了数量研究。使用商业CFD封装(FLUENT-6.3.26)进行仿真,以掌握恒定热磁气管的热量和流体流动的物理行为,该管在层流状态下安装有椭圆形扭曲带的椭圆形扭曲带,用于雷诺数从200到2100到2100.模拟结果与普通管的文献相关性匹配,用于验证果实数量的8%变化和摩擦因子的10%。结果表明,配备有椭圆形扭转带(ECT)的管中的传热速率和摩擦系数明显高于配有经典扭曲胶带(CTT)的摩擦系数。此外,该结果还表明,努塞尔数,并与椭圆切割扭转的磁带(ECT)随捻比(y)和切削深度(w)的增加管内的摩擦系数。

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