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A study of synthetic jets from rectangular and dual-circular orifices

机译:矩形和双圆形孔口的合成射流的研究

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The results of an investigation into the effect of both the number of orifices and the geometry of these orifices on the fluid structures exiling from a synthetic jet actuator are presented. The experiments have used smoke and laser visualisation and single hotwire measurement techniques to establish the flow field exiting the various orifices and the fluid velocities in the exit plane of the orifice. The results indicate that the use of two small orifices can perhaps produce two coherent vortex rings with a total circulation greater than that found in the ring produced by a large, single orifice of equivalent area. However, they have also shown that there are three different types of interaction between two adjacent orifices, related to the spacing between them and the level of excitation applied to the diaphragm. In addition, these interactions may affect the overall level of circulation in different ways. Finally the results have shown that a rectangular orifice of a given exit plane area is more likely to produce a turbulent ring than the equivalent circular orifice due to a 'smoothing' process which endeavours to create an axisymmetric ring from a non-axisymmetric slug of fluid. This work has shown that when using synthetic jet actuators in flow control applications, care should be taken in selecting the spacing and geometry of the orifices used, as certain set-ups may be more suited to certain applications than others.
机译:给出了孔的数量和这些孔的几何形状对从合成射流致动器排出的流体结构的影响的研究结果。实验已使用烟雾和激光可视化以及单条热线测量技术来建立离开各个孔口的流场以及孔口出口平面中的流体速度。结果表明,使用两个小孔可能会产生两个相干的涡流环,其总循环量要大于一个大的,等效面积的单个孔口所产生的环。然而,他们还表明,两个相邻的孔之间存在三种不同类型的相互作用,这与它们之间的间距和施加到膜片的激励水平有关。此外,这些相互作用可能以不同的方式影响整体的流通水平。最终,结果表明,给定出口平面区域的矩形孔口比等效的圆形孔口更容易产生湍流环,这是由于“平滑”过程的缘故,该过程力图由非轴对称的流体段形成轴对称的环。 。这项工作表明,在流量控制应用中使用合成射流执行器时,应谨慎选择所用孔口的间距和几何形状,因为某些装置可能比其他装置更适合某些应用。

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