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首页> 外文期刊>Annals of nuclear energy >Effect of longitudinal pitch on convective heat transfer in crossflow over in-line tube banks
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Effect of longitudinal pitch on convective heat transfer in crossflow over in-line tube banks

机译:纵向节距对直列管束横流中对流传热的影响

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摘要

An analytical study using a CFD (Computational Fluid Dynamics) code has been performed to investigate the effect of the longitudinal pitch on the single-phase heat transfer characteristics in crossflow over inline tube banks. A simplified geometry with periodic and symmetric boundary conditions is employed for the analysis. A sensitivity analysis using various two-equation turbulence models has been conducted to examine the impact of the turbulence model on the heat transfer characteristics and to determine a turbulence model that can describe the physical phenomena of interest appropriately. The result indicates that the heat transfer coefficient might be reduced by 37.1% from the prediction by a well-known correlation by Zukauskas (Adv. Heat Trans., 2007, 8, 93) as the longitudinal pitch decreases. By analyzing the result, it is found that the heat transfer degradation can be estimated by using an empirical correction factor and the Zukauskas' correlation can predict existing experimental data when the correlation is combined with the empirical correction factor developed in this study.
机译:已经进行了使用CFD(计算流体动力学)代码的分析研究,以研究纵向螺距对直列管束横流中单相传热特性的影响。分析采用具有周期性和对称边界条件的简化几何形状。已经进行了使用各种二方程湍流模型的灵敏度分析,以检查湍流模型对传热特性的影响,并确定可以适当描述感兴趣的物理现象的湍流模型。结果表明,随着纵向间距的减小,传热系数可能会因Zukauskas的众所周知的相关性而从预测值降低37.1%(Adv。Heat Trans。,2007,8,93)。通过对结果进行分析,发现可以通过使用经验校正因子来估算传热退化,并且将Zukauskas的相关性与本研究中开发的经验校正因子结合使用时,Zukauskas相关性可以预测现有的实验数据。

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