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2D Lid-Driven Cavity Flow at High Reynolds Numbers: Some Interesting Fluid-Dynamical Issues

机译:高雷诺数的2D盖子驱动腔流量:一些有趣的流体动力学问题

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Solutions currently considered to provide the bench-mark for 2-D lid-driven cavity flow are shown here to be are not grid-independent. Using clustered grids and a time-accurate multi-grid code, grid-independent solutions are reported here at Reynolds number Re = 100 and 400 (based on lid velocity and cavity size). Preliminary solutions are presented also at Re = 3200 and 10000. It is found that fine resolution near the wall is necessary to obtain the solution accurately even in the core of the cavity. The solutions presented here call into question both the theories proposing an asymptotically constant core vorticity in the limit of infinite Reynolds numbers, and current interpretations of experimental data.
机译:目前考虑提供2-D盖驱动腔流量的基准标记的解决方案在此显示出不是不同的网格。使用集群网格和时间准确的多网格代码,在雷诺数RE = 100和400(基于盖速度和腔尺寸),在此处报告网桥无关的解决方案。在RE = 3200和10000也存在初步解决方案。发现,即使在腔的核心中,也必须在壁附近准确地获得溶液。此处介绍了在无限雷诺数的极限下提出了提出渐近恒定核心的理论,以及对实验数据的当前解释。

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