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A comparison and assessment of approaches for modelling flow over in-line tube banks

机译:在线管束流动建模方法的比较和评估

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The paper reports experiences from applying alternative strategies for modelling turbulent flow and local heat-transfer coefficients around in-line tube banks. The motivation is the simulation of conditions in the closely packed cross-flow heat exchangers used in advanced gas-cooled nuclear reactors (AGRs). The main objective is the flow simulation in large-scale tube banks with confining walls. The suitability and accuracy of wall-resolved large-eddy simulation (LES) and Unsteady Reynolds-Averaged Navier-Stokes (URANS) approaches are examined for generic, square, in-line tube banks, where experimental data are limited but available. Within the latter approach, both eddy-viscosity and Reynolds-stress-transport models have been tested. The assumption of flow periodicity in all three directions is investigated by varying the domain size. It is found that the path taken by the fluid through the tube-bank configuration differs according to the treatment of turbulence and whether the flow is treated as two- or three-dimensional. Finally, the important effect of confining walls has been examined by making direct comparison with the experiments of the complete test rig of Aiba et al. (1982).
机译:这篇论文报道了应用替代策略对直列管束周围的湍流和局部传热系数进行建模的经验。动机是模拟先进气冷核反应堆(AGR)中使用的密排错流热交换器中的条件。主要目标是在带有密闭壁的大型管束中进行流动模拟。对于通用,方形,直列式管束,对壁解析大涡模拟(LES)和非稳态雷诺平均Navier-Stokes(URANS)方法的适用性和准确性进行了检验,但实验数据有限但可用。在后一种方法中,已经测试了涡流粘度模型和雷诺应力传输模型。通过改变域的大小来研究所有三个方向上的流动周期性的假设。已经发现,流体通过管束构造所采取的路径根据湍流的处理以及流是二维还是三维而有所不同。最后,通过与Aiba等人的完整试验台的实验进行直接比较,研究了围墙的重要作用。 (1982)。

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