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V-cut twisted tape insert effect on heat transfer enhancement of single phase turbulent flow heat exchanger

机译:V型扭曲胶带插入效果对单相湍流热交换器的传热增强

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Turbulator is recognized as a method to increase the performance of the heat exchanger. Turbulator in the form of V-cut twisted tape insert could help to increase the performance by enhancing the coefficient of the heat transfer. This paper proposes a new design of V-cut twisted tape insert (VTT) with different width ratio (w/W), which investigated on the heat transfer enhancement, in the form of Nusselt number (Nu) and friction factor (f) characteristics. Three different width ratios (w/W) 0.32; 0.38 and 0.48 are introduced in this experiment. The working fluid is the hot water in the inner tube and cold water in the annulus, the flow direction is counter-flow. The temperature inlet of hot water is kept constant at 60°C while the flow rate is in the range of Reynolds number 5400 - 17,350. The heat exchanger without insertion (plain tube) and typical twisted tape insert (TT) are examined for comparison. Results indicate that the proposed VTT increases the heat transfer, friction factor, and thermal performance of the heat exchanger. Under the similar condition, VTT provides the best performance in comparison with TT and plain tube. Decreasing width ratio (w/W) increases the heat transfer and thermal performance. However, when the heat transfer is increased, the friction factor is also increasing. The results also revealed that the use of the VTT and TT, the increase in the heat transfer and friction factor up to 97% and 3.48 times of the plain tube. The highest thermal performance is 1.4.
机译:湍流器被识别为增加热交换器性能的方法。 V形捻胶带插入件形式的湍流可以通过增强传热系数来帮助提高性能。本文提出了具有不同宽度(W / W)的V切割扭曲胶带插入件(VTT)的新设计,该宽度比(W / W)研究了露珠数(NU)和摩擦系数(F)特性的传热增强。三种不同的宽度比(w / w)0.32;本实验中介绍了0.38和0.48。工作流体是内管中的热水和环中的冷水,流动方向是反流。热水的温度入口在60℃下保持恒定,而流速在雷诺数5400-17,350的范围内。没有插入(普通管)和典型的扭转带插入件(TT)的热交换器进行比较。结果表明,所提出的VTT增加了热交换器的传热,摩擦系数和热性能。在类似的条件下,VTT与TT和普通管相比提供了最佳性能。减小宽度比(w / w)增加了传热和热性能。然而,当热传递增加时,摩擦因子也在增加。结果还透露,使用VTT和TT,传热增加和摩擦因子高达97%和3.48倍的平原管。最高的热性能为1.4。

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