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Physical Analysis and Scaling of a Jet and Vortex Actuator

机译:射流和涡流执行器的物理分析和缩放

摘要

Our previous studies have shown that the Jet and Vortex Actuator generates free-jet, wall-jet, and near- wall vortex flow fields. That is, the actuator can be operated in different modes by simply varying the driving frequency and/or amplitude. For this study, variations are made in the actuator plate and wide-slot widths and sine/asymmetrical actuator plate input forcing (drivers) to further study the actuator induced flow fields. Laser sheet flow visualization, particle- image velocimetry, and laser velocimetry are used to measure and characterize the actuator induced flow fields. Laser velocimetry measurements indicate that the vortex strength increases with the driver repetition rate for a fixed actuator geometry (wide slot and plate width). For a given driver repetition rate, the vortex strength increases as the plate width decreases provided the wide-slot to plate-width ratio is fixed. Using an asymmetric plate driver, a stronger vortex is generated for the same actuator geometry and a given driver repetition rate. The nondimensional scaling provides the approximate ranges for operating the actuator in the free jet, wall jet, or vortex flow regimes. Finally, phase-locked velocity measurements from particle image velocimetry indicate that the vortex structure is stationary, confirming previous computations. Both the computations and the particle image velocimetry measurements (expectantly) show unsteadiness near the wide-slot opening, which is indicative of mass ejection from the actuator.
机译:我们以前的研究表明,射流和涡流执行器会产生自由射流,壁射流和近壁涡流场。即,通过简单地改变驱动频率和/或振幅,可以以不同的模式操作致动器。在本研究中,对执行器板和宽槽宽度以及正弦/非对称执行器板输入力(驱动器)进行了更改,以进一步研究执行器引起的流场。激光薄片流动可视化,颗粒图像测速和激光测速用于测量和表征执行器引起的流场。激光测速仪的测量表明,对于固定的致动器几何形状(宽槽和板宽),涡流强度随驱动器重复频率的增加而增加。对于给定的驱动器重复率,如果宽槽与板宽之比固定,涡旋强度会随着板宽减小而增加。使用非对称板驱动器,对于相同的执行器几何形状和给定​​的驱动器重复率,会产生更强的旋涡。无量纲缩放提供了在自由射流,壁射流或涡流状态下操作执行器的大概范围。最后,来自粒子图像测速仪的锁相速度测量表明涡旋结构是静止的,从而确认了先前的计算。计算和颗粒图像测速测量(预期)都显示了在宽缝开口附近的不稳定,这表明从执行器中喷出了质量。

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