首页> 外文OA文献 >LARGE-EDDY SIMULATIONS OF A SEPARATION/REATTACHMENT BUBBLE IN A TURBULENT-BOUNDARY-LAYER SUBJECTED TO A PRESCRIBED UPPER-BOUNDARY, VERTICAL-VELOCITY PROFILE
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LARGE-EDDY SIMULATIONS OF A SEPARATION/REATTACHMENT BUBBLE IN A TURBULENT-BOUNDARY-LAYER SUBJECTED TO A PRESCRIBED UPPER-BOUNDARY, VERTICAL-VELOCITY PROFILE

机译:湍流-边界层受规定的上边界,垂直速度剖面影响的分离/重合气泡的大涡模拟

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摘要

We describe large-eddy simulations of turbulent boundary-layer flow over a flat plate at high Reynolds number in the presence of an unsteady, three-dimensional flow separation/reattachment bubble. The stretched-vortex subgrid-scale model is used in the main flow domain combined with a wall-model that is a two-dimensional extension of that developed by Chung & Pullin (2009). Flow separation and re-attachment of the incoming boundary layer is induced by prescribing wall-normal velocity distribution on the upper boundary of the flow domain that produces an adverse-favorable stream-wise pressure distribution at the wall. The LES predicts the distribution of mean shear stress along the wall including the interior of the separation bubble. Several properties of the separation/reattachment flow are discussed.
机译:我们描述了在不稳定的三维流分离/重新附着气泡的存在下,高雷诺数下平板上湍流边界层流动的大涡模拟。在主流域中使用了拉伸涡流子网格规模模型,并结合了由Chung&Pullin(2009)开发的二维扩展模型的壁模型。通过在流域的上边界上规定壁法向速度分布,从而在壁上产生不利的沿流方向的压力分布,来引起进入的边界层的流动分离和重新附着。 LES预测了沿着包括分离气泡内部在内的壁的平均剪切应力的分布。讨论了分离/重新附着流的几种特性。

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