首页> 外文期刊>Journal of Fluid Mechanics >Low-frequency unsteadiness mechanisms in shock wave/turbulent boundary layer interactions over a backward-facing step
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Low-frequency unsteadiness mechanisms in shock wave/turbulent boundary layer interactions over a backward-facing step

机译:反向落实步骤中冲击波/湍流边界层相互作用的低频不稳定机制

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摘要

The low-frequency unsteady motions behind a backward-facing step (BFS) in a turbulent flow at and are investigated using a well-resolved large-eddy simulation. The instantaneous flow field illustrates the unsteady phenomena of the shock wave/boundary layer interaction (SWBLI) system, including vortex shedding in the shear layer, the flapping motions of the shock and breathing of the separation bubble, streamwise streaks near the wall and arc-shaped vortices in the turbulent boundary layer downstream of the separation bubble. A spectral analysis reveals that the low-frequency behaviour of the system is related to the interaction between shock wave and separated shear layer, while the medium-frequency motions are associated with the shedding of shear layer vortices. Using a three-dimensional dynamic mode decomposition (DMD), we analyse the individual contributions of selected modes to the unsteadiness of the shock and streamwise-elongated vortices around the reattachment region. Gortler-like vortices, which are induced by the centrifugal forces originating from the strong curvature of the streamlines in the reattachment region, are strongly correlated with the low-frequency unsteadiness in the current BFS case. Our DMD analysis and the comparison with an identical but laminar case provide evidence that these unsteady Gortler-like vortices are affected by fluctuations in the incoming boundary layer. Compared with SWBLI in flat plate and ramp configurations, we observe a slightly higher non-dimensional frequency (based on the separation length) of the low-frequency mode.
机译:采用高分辨率大涡模拟方法,研究了和附近湍流中后台阶(BFS)后的低频非定常运动。瞬态流场描述了激波/边界层相互作用(SWBLI)系统的非定常现象,包括剪切层中的涡脱落、激波的拍打运动和分离气泡的呼吸、壁面附近的流向条纹以及分离气泡下游湍流边界层中的弧形涡。频谱分析表明,系统的低频行为与激波和分离剪切层之间的相互作用有关,而中频运动与剪切层旋涡的脱落有关。利用三维动态模式分解(DMD),我们分析了所选模式对激波不稳定性的单独贡献,以及再附着区域周围的流向拉长涡。戈特勒涡是由再附着区流线的强曲率产生的离心力引起的,它与当前BFS情况下的低频不稳定性密切相关。我们的DMD分析和与一个相同但层流的情况的比较提供了证据,证明这些非定常的Gortler型涡受到进入边界层波动的影响。与平板和斜坡结构中的SWBLI相比,我们观察到低频模式的无量纲频率(基于分离长度)略高。

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