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Computational Study of the Effect of Slot Orientation on Synthetic Jet-Based Separation Control

机译:缝隙取向对基于合成射流的分离控制影响的计算研究

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摘要

A computational study is conducted to explore the effect of synthetic jet orientation on boundary layer separation control. A six-to-one aspect-ratio rectangular slot is chosen in the current study and streamwise and spanwise orientations of this slot are analyzed. In the first part of this study, the interaction of the jet with an attached laminar boundary layer for both slot configurations is examined. The dominant feature in the streamwise oriented slot is a pair of strong counter-rotating streamwise vortices and these are missing in the spanwise oriented slot configuration. These streamwise vortices undergo stretching and tilting to form a series of hairpin vortex structures and analysis shows that "sweeping" motions associated with these vortices bring high momentum fluid into the boundary layer. A variety of flow statistics are computed and these indicate that despite the smaller overall blockage represented by the streamwise oriented slot, it is more effective in increasing the momentum of the boundary layer. In the second part of this study, the slot orientation effect is examined for a separated flow over a wall-mounted hump at a chord Reynolds number of 1.5 X 10~(4) at different operational conditions. Flow structures generated by the synthetic jet in both slot configurations in this case are similar to those in the case of attached boundary layer. A comparison of various instantaneous quantities which characterize the separation bubble size shows that the streamwise oriented slot achieves better performance for all jet velocities and most forcing frequencies in the range studied here. It is also found that the most effective frequency for both slot configurations is the one that matches with the dominant frequency of the baseline flow.
机译:进行了一项计算研究,以探索合成射流取向对边界层分离控制的影响。在当前研究中选择了六比一的纵横比矩形缝隙,并分析了该缝隙的流向和展向方向。在本研究的第一部分中,检查了两种狭缝配置下射流与附着的层流边界层的相互作用。沿流向的槽中的主要特征是一对强的逆向流向涡流,而在沿翼向的槽结构中则没有。这些沿流方向的涡旋经过拉伸和倾斜以形成一系列发夹形涡旋结构,分析表明,与这些涡旋相关的“扫掠”运动将高动量流体带入边界层。计算了各种流量统计数据,这些数据表明,尽管由面向流的缝隙表示的总体阻塞较小,但在增加边界层的动量方面更有效。在本研究的第二部分中,研究了在不同操作条件下,壁挂式驼峰上的分离流在1.5 X 10〜(4)的雷诺数下的狭缝取向效应。在这两种情况下,由合成射流产生的流动结构与附接边界层的情况相似。对表征分离气泡尺寸的各种瞬时量的比较表明,在此处研究的范围内,所有喷射速度和大多数强迫频率下,沿流向定向的缝隙均具有更好的性能。还发现,两种时隙配置的最有效频率是与基准流的主导频率匹配的频率。

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