首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >THE EFFECT OF ORIFICE ANGLE AND CAVITY DIMENSION ON RECTANGULAR SYNTHETIC JET ACTUATORS
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THE EFFECT OF ORIFICE ANGLE AND CAVITY DIMENSION ON RECTANGULAR SYNTHETIC JET ACTUATORS

机译:孔角和腔尺寸对矩形合成射流致动器的影响

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In the last decade, a great deal of interest has been focused on the application of synthetic jet actuators (SJA) for active flow control. SJAs delay separation by injecting vortex pairs into the cross flow and energizing the turbulent boundary layer. The goal of this study was to investigate the effects of the orifice angle on the performance of axisymmetric SJAs. The SJAs used in this experiment were composed of a piezoelectric (PZT) membrane, cavities and orifices. SJA's with either a straight (90°) or angled (60°) orifices were characterized using hot-wire anemometry and Particle Image Velocimetry (PIV). It was found that the structure of the jet flow changed depending on the angle of the orifice with differences in the resulting vortical structure observed. The peak jet speed was found to be higher for the straight orifice than for the angled orifice contradicting the analytic prediction based on cavity dimension.
机译:在过去的十年中,人们非常关注合成射流执行器(SJA)在主动流量控制中的应用。 SJA通过将涡流对注入横流并激励湍流边界层来延迟分离。这项研究的目的是研究孔口角度对轴对称SJAs性能的影响。本实验中使用的SJA由压电(PZT)膜,腔和孔组成。使用热线风速仪和粒子图像测速仪(PIV)对具有直(90°)或成角度(60°)孔的SJA进行表征。已经发现,射流的结构根据孔的角度而变化,并且观察到所形成的涡旋结构存在差异。发现直孔口的峰值射流速度高于角孔口的峰值射流速度,这与基于腔尺寸的分析预测相矛盾。

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