首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental and numerical studies of synthetic jets driven by a dual-diaphragm piezoelectric actuator
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Experimental and numerical studies of synthetic jets driven by a dual-diaphragm piezoelectric actuator

机译:双隔膜压电致动器驱动合成射流的实验和数值研究

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The applications of piezoelectric synthetic jet actuators have shown great potential as active flow control devices. The objective of this study is to investigate the flow phenomenon of a synthetic jet generated by a dual-diaphragm piezo-driven actuator. In this analysis, the computational approach adopted unsteady three-dimensional conservation equations of mass and momentum for examining the development process of synthetic jets. The moving boundary was also treated to represent the motion of the piezo diaphragm. Experimentally, a flow visualization system was employed to acquire the particle-streak images scattered from red fluorescent spheres for observing the synthetic jet flow. The jet velocity along the centre-line was also measured by using a hot-wire anemometer. The system test results demonstrated a satisfactory functioning of the actuator for producing synthetic jets. The predictions were then compared with the visualized particle-streak images and the measured centre-line velocity of the synthetic jet to validate the computer software. In the near-field, both simulation results and experimental observations revealed the time-cyclical formation and advection of a vortex pair in a full sinusoidal actuation cycle at an operating frequency of 4 Hz. When the vortex pair travelled well downstream, the ambient air from the vicinity of the slot was entrained into the cavity of the actuator. However, the overall far-field flow pattern, characterized by longitudinal decay of the centre-line velocity and lateral spreading, resembled a conventional continuous air-jet in essence.
机译:压电合成射流执行器的应用已显示出作为主动流量控制装置的巨大潜力。这项研究的目的是研究由双隔膜压电驱动致动器产生的合成射流的流动现象。在此分析中,计算方法采用了质量和动量的非定常三维守恒方程来检验合成射流的发展过程。还对移动边界进行了处理,以表示压电振动膜的运动。实验上,使用流动可视化系统获取从红色荧光球散射的颗粒条纹图像,以观察合成射流。沿中心线的射流速度也通过使用热线风速仪测量。系统测试结果表明,执行器在生产合成射流方面具有令人满意的功能。然后将预测结果与可视化的颗粒条纹图像和合成射流测得的中心线速度进行比较,以验证计算机软件。在近场中,仿真结果和实验观察都揭示了在4 Hz的工作频率下,在完整的正弦驱动循环中,涡旋对的时间周期形成和对流。当涡流对向下游移动时,来自缝隙附近的环境空气被带入致动器的腔中。但是,以远处中心线速度的纵向衰减和横向扩展为特征的总体远场流动模式从本质上类似于传统的连续喷气。

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