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Start-up flows in a three-dimensional rectangular driven cavity of aspect ratio 1 : 1 : 2 at Re=1000

机译:启动在Re = 1000时长宽比为1:1:2的三维矩形从动腔中流动

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This paper provides comparisons between experimental data and numerical results for impulsively started flows in a three-dimensional rectangular lid-driven cavity of aspect ratio 1:1:2 at Reynolds number 1000. The initial evolution of this flow is studied up to the dimensionless time t = 12 and is found both experimentally and numerically to exhibit high sensitivity to geometrical perturbations. Three different flow developments generated by very small changes in the boundary geometry are found in the experiments and are reproduced by the numerics. This indicates that even at moderate Reynolds numbers the predictability of three-dimensional incompressible viscous flows in bounded regions requires controlling the shape of the boundary and the values of the boundary conditions more carefully than needed in two dimensions. [References: 34]
机译:本文提供了雷诺数为1000的长宽比为1:1:2的三维矩形盖驱动腔中的脉冲启动流动的实验数据和数值结果的比较。研究了该流动的初始演化,直至无量纲的时间t = 12,在实验和数值上均表现出对几何扰动的高度敏感性。在实验中发现了由边界几何形状的非常小的变化产生的三种不同的流动发展,并通过数值进行了再现。这表明,即使在中等的雷诺数下,在边界区域中三维不可压缩粘性流的可预测性也要求控制边界的形状和边界条件的值比二维所需的更为谨慎。 [参考:34]

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