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Study the orifice effects of a synthetic jet actuator design

机译:研究合成射流致动器设计的节流孔效应

摘要

The synthetic jet actuator is an active flow control device that is used to improve the aerodynamic performance on working surfaces such as wings, helicopter blades and ground vehicles. The performance of synthetic jet actuator depends on the design of the orifice and cavity, and the oscillating driver. Piezoelectric diaphragm was used as an oscillating driver because of its small size and easier installation. The focus of this project is to study the effects of orifice size and shape for a synthetic jet actuator design. The effects were studied on circular and rectangular shapes, and different sizes of orifice. Meanwhile, the configurations of the cavity are fixed. Experiments were performed to determine the maximum pulse jet velocity and turbulence intensities of the jet coming out of the orifice, driven by the Piezoelectric diaphragm at different frequencies, at constant input voltage of 2V. The experiment mainly involved the measurement of the exit pulse jet velocity using a hot-wire anemometer. The results demonstrated that the circular orifice produced higher maximum pulse jet velocity and smaller sizes orifices, both circular and rectangular, results in higher velocity jets.
机译:合成射流执行器是一种主动式流量控制装置,用于改善机翼,机翼,直升飞机叶片和地面车辆等工作表面的空气动力学性能。合成射流执行器的性能取决于孔和腔的设计以及振荡驱动器。压电膜片由于体积小且易于安装而被用作振动驱动器。该项目的重点是研究孔口尺寸和形状对合成射流致动器设计的影响。研究了圆形和矩形形状以及不同尺寸的孔的效果。同时,空腔的形状是固定的。进行实验以确定在2V恒定输入电压下由压电膜片以不同频率驱动从孔口出来的最大脉冲射流速度和射流的湍流强度。该实验主要涉及使用热线风速仪测量出口脉冲射流速度。结果表明,圆形孔产生更高的最大脉冲射流速度,而较小尺寸的圆形和矩形孔则产生更高的射流。

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