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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >New equations for Nusselt number and friction factor of the annulus side of the conically coiled tubes in tube heat exchangers
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New equations for Nusselt number and friction factor of the annulus side of the conically coiled tubes in tube heat exchangers

机译:管道热交换器圆周卷管环侧的露天数和摩擦系数的新方程

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摘要

Three dimensional simulation of heat transfer (turbulent/laminar) and fluid flow of water through the annulus side of conically tube heat exchangers is presented in this study. This study shows an accurate and clear results which were not available before. Realizable K-epsilon model is chosen for perusing the turbulence influences. The influence of operational and geometrical characteristics on the Friction factor and the Nusselt number is obtained. The results show if the cone angle increases from 0 degrees to 90 degrees the Friction factor and the Nusselt number increase by 15.51% and 37.17%, respectively. Furthermore, it is concluded that if the dimensionless ratio of the outer tube diameter to the inner one increases by 50% the Nusselt number increases by 39.11% while the friction factor decreases by 23.29%. The outcomes of this study proposed two new correlations (that cannot be found in the previous studies) to estimate the friction factor and the Nusselt number of the annulus side of these heat exchangers. These proposed equations are necessary and important for engineering applications involving designs of these heat exchangers. Furthermore, the current results are validated using the experimental data available in the literature. This validation shows an average error of only 9.87% in calculating Nusselt numbers, which is more accurate than any other predictive equations available in the literature.
机译:本研究介绍了通过圆锥管热交换器的环侧的传热(湍流/层状)和流体流体流动的三维模拟。本研究显示了之前不可用的准确和明确的结果。选择可实现的K-EPSILON模型,以妨碍湍流影响。获得了在摩擦因子上的作用和几何特征的影响和营养数。结果表明,如果锥角从0度增加到90度,摩擦因子分别增加15.51%和37.17%。此外,得出结论,如果外管直径与内部的无量纲比增加50%,则泡沫数量增加39.11%,而摩擦因子降低23.29%。该研究的结果提出了两种新相关性(在先前的研究中不能发现)来估计这些热交换器的环形侧的摩擦因子和泡沫数量。这些所提出的方程对于涉及这些热交换器的设计的工程应用是必要的并且重要的。此外,使用文献中可用的实验数据验证了当前结果。该验证在计算营养号码时显示平均误差仅为9.87%,这比文献中的任何其他预测方程更准确。

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