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A Numerical Study of Forced Convection Heat Transfer for Staggered Tube Banks in Cross-Flow

机译:错流错列管束强迫对流换热的数值研究

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摘要

This paper presents the numerical study on the two-dimensional forced convection heat transfer for staggered tube banks in cross flow under incompressible, steady-state conditions. This system is solved on the body fitted coordinates (BFC) using the finite difference method (FDM)for the flow over a bundle of cylindrical tubes. The constant heat flux is imposed on the surface of the tubes as the thermal boundary condition. The type of the arrangement is considered a staggered of tubes. The longitudinal pitch to tube diameter ratios (ST/D) of 1.25, 1.5 and 2 are also considered. Reynolds numbers are varied from 25 to 250 and udPrandtl number is taken as 0.71. Velocity field vectors and temperature contours, local and average Nusselt numbers were analysed in this paper. It can be seen that the predicted results are good agreements with previous experimental and numerical results. The obtained results show that the heat transfer rate increases with decreases of the step to the longitudinal tube diameter. The local heat transfer strongly depends on the Reynolds number. It tends to obtain the highest values at the surface opposite to the direction of flow. The heat transfer rate is insignificant in the areas of recycling.
机译:本文提出了在不可压缩的稳态条件下错流交叉流动的二维强迫对流换热的数值研究。该系统使用有限差分法(FDM)在圆柱管束上流动的有限拟合坐标(BFC)上求解。恒定的热通量作为热边界条件施加在管的表面上。布置的类型被认为是交错的管子。还考虑了纵向节距与管径之比(ST / D)为1.25、1.5和2。雷诺数从25到250不等, udPrandtl数取为0.71。本文分析了速度场矢量和温度等高线,局部和平均努塞尔数。可以看出,预测结果与以前的实验和数值结果吻合良好。获得的结果表明,传热速率随着纵向管直径的阶跃减小而增加。局部传热很大程度上取决于雷诺数。它倾向于在与流动方向相反的表面上获得最大值。在回收领域,传热率微不足道。

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