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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Reduced-order coherent structures in active flow separation control using a bio-inspired flapping actuator
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Reduced-order coherent structures in active flow separation control using a bio-inspired flapping actuator

机译:使用生物启发拍打致动器的主动流分离控制中的下降顺序相干结构

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摘要

An experimental study was conducted to investigate large-scale coherent structures induced by a bio-inspired flapping actuator in a turbulent backward-facing step flow. The flow field velocity dataset in the horizontal-vertical plane was obtained by planar particle image velocimetry. The flapping actuator was implemented over the step edge and it was driven to vertically oscillate, generating periodic small perturbations into the separated shear layer. As a result of active flow control, time-averaged reattachment length was reduced by 31% and Reynolds stresses as well as in-plane turbulent kinetic energy in the separated shear layer were considerably increased. In proper orthogonal decomposition analysis, the first two modes are found to be phase-correlated in the phase portrait of the coefficients. Therefore, reduced-order coherent structures are reconstructed by the first two modes, showing the phase evolution of the vortex shedding process. The extracted reduced-order coherent structures provide a better understanding of the underlying flow physics and are beneficial to effective flow separation control.
机译:进行了实验研究以研究由生物启发型拍摄致动器在湍流的后向步骤流动中引起的大规模相干结构。通过平面粒子图像速度法获得水平垂直平面中的流场速度数据集。在步进边缘上实现拍打致动器,并且它被驱动到垂直振荡,在分离的剪切层中产生周期性的小扰动。由于主动流量控制,时间平均重新分离长度减少了31%,并且雷诺应力以及分离的剪切层中的面内湍流动能显着增加。在适当的正交分解分析中,发现前两种模式在系数的相位肖像中相对相关。因此,由前两种模式重建了减少的相干结构,示出了涡旋脱落过程的相位演化。提取的减小顺序相干结构提供了更好地理解潜在的流量物理,并且有利于有效的流动分离控制。

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