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Channel flow with large longitudinal ribs

机译:具有大纵向肋的通道流动

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We present data from direct numerical simulations of flow through channels containing large, longitudinal, surface-mounted, rectangular ribs at various spanwise spacings, which lead to secondary flows. It is shown that appropriate modifications to the classical log-law, predicated on a greater wetted surface area than in a plane channel, lead to a log-law-like region in the spanwise-averaged axial mean velocity profiles, even though local profiles may be very different. The secondary flows resulting from the presence of the ribs are examined and their effects discussed. Comparing our results with the literature we conclude that the sense of the secondary flows is largely independent of the particular rib spacing whether normalised by channel depth or rib width. The strength of the secondary flows, however, is shown to depend on the ratio of rib spacing to rib width and on Reynolds number. Topological features of the secondary flow structure are illustrated via a critical point analysis and shown to be characterised in all cases by a free stagnation point above the centre of the rib. Finally, we show that if the domain size is chosen as a 'minimal channel' size, rather than a size which allows adequate development of the usual outer layer flow structures, the secondary flows can be affected and this leads inevitably to differences in the near-rib flows so that for ribbed channels, unlike plain channels, it is unwise to use minimal domains to identify details of the near-wall flow.
机译:我们提供了直接数值模拟的数据,这些数据来自于在不同的翼展间距下,通过包含大型、纵向、表面安装的矩形肋的通道的流动,这些肋导致了二次流。结果表明,对经典对数定律的适当修改(基于比平面通道中更大的润湿表面积)会导致在展向平均轴向平均速度剖面中出现类似对数定律的区域,即使局部剖面可能非常不同。研究了由于肋的存在而产生的二次流,并讨论了它们的影响。将我们的结果与文献进行比较,我们得出结论,二次流的意义在很大程度上独立于特定的肋间距,无论是通过通道深度还是肋宽度进行归一化。然而,二次流的强度取决于肋间距与肋宽度之比以及雷诺数。通过临界点分析说明了二次流结构的拓扑特征,并表明在所有情况下,二次流结构的特征都是肋中心上方的自由驻点。最后,我们表明,如果将区域大小选择为“最小通道”大小,而不是允许充分发展通常的外层流动结构的大小,二次流可能会受到影响,这不可避免地导致近肋流动的差异,因此对于肋形通道,与普通通道不同,使用最小域来识别近壁流的细节是不明智的。

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