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Effects of Sweeping Jet Actuator Parameters on Flow Separation Control

机译:清扫式射流执行器参数对分流控制的影响

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摘要

A parametric experimental study was performed with sweeping jet actuators (fluidic oscillators) to determine their effectiveness in controlling flow separation on an adverse pressure gradient ramp. Actuator parameters that were investigated include blowing coefficients, operation mode, pitch and spreading angles, streamwise location, and size. Surface pressure measurements and surface oilflow visualization were used to characterize the effects of these parameters on the actuator performance. 2D Particle Image Velocimetry measurements of the flow field over the ramp and hot-wire measurements of the actuator’s jet flow were also obtained for selective cases. In addition, the sweeping jet actuators were compared to other well-known flow control techniques such as micro-vortex generators, steady blowing, and steady vortex-generating jets. The results confirm that the sweeping jet actuators are more effective than steady blowing and steady vortex-generating jets for this ramp configuration. The results also suggest that an actuator with a wider jet spreading (110 vs. 70 degrees) placed closer (2.3 vs. 7 boundary layer thickness upstream) to the flow separation location provides better performance. Different actuator sizes obtained by scaling down the actuator geometry produced different jet spreading. Scaling down the actuator (based on the throat dimensions) from 6.35 × 3.18 mm to 3.81 × 1.9 mm resulted in similar flow control performance; however, scaling down the actuator further to 1.9 × 0.95 mm reduced the actuator efficiency by reducing the jet spreading considerably. The results of this study provide insight that can be used to design and select the optimal sweeping jet actuator configuration for flow control applications.
机译:使用吹扫式射流执行器(流体振荡器)进行了参数化实验研究,以确定其在反压梯度斜坡上控制流分离的有效性。研究的执行器参数包括鼓风系数,工作模式,俯仰角和展开角,沿流方向和尺寸。使用表面压力测量和表面油流可视化来表征这些参数对执行器性能的影响。在特定情况下,还可以获得斜坡上流场的2D粒子图像测速测量以及执行器喷射流的热线测量。此外,将清扫式射流执行器与其他众所周知的流量控制技术进行了比较,例如微涡旋发生器,稳定吹气和稳定产生涡流的射流。结果证实,对于这种斜坡构造,清扫喷射器促动器比稳定吹气和稳定产生涡流的喷射器更有效。结果还表明,具有更宽射流分布(110度与70度)的致动器放置在离流分离位置更近(上游的边界层厚度为2.3对7倍)的位置,可以提供更好的性能。通过按比例缩小执行器几何尺寸获得的不同执行器尺寸会产生不同的射流扩散。将执行机构(基于喉部尺寸)从6.35×3.18 mm缩小到3.81×1.9 mm,可获得类似的流量控制性能;但是,将执行器进一步缩小至1.9×0.95 mm会大大降低喷头的扩散,从而降低了执行器的效率。这项研究的结果提供了可用于设计和选择用于流量控制应用的最佳清扫喷射执行器配置的见识。

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    Mehti Koklu;

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  • 年(卷),期 -1(56),1
  • 年度 -1
  • 页码 100–110
  • 总页数 49
  • 原文格式 PDF
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