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High frequency characterization of a sweeping jet actuator

机译:清扫射流执行器的高频表征

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Sweeping jets are an emerging type of actuators that have gained interest due to their potential use in flow control applications. The working principle of these devices is based on the bi-stable attachment of a jet to adjacent walls. They are able to produce unsteady blowing within a wide range of operating frequencies. Nevertheless, the state of art shows a lack of space-time characterization of these actuators for high sweeping frequencies. This paper presents a conditional approach that reconstructs the spatial dynamic response of sweeping jets for sweeping frequencies above 500 Hz. The time-dependent velocity is measured with two single-hot-wire sensors: a reference one placed at the edge of the exit nozzle, and a flying one. The method is then tested to characterize the flow at the exit nozzle of an in-house sweeping jet actuator with 1 mm space resolution, and 50 mu s time resolution. These measurements are performed with a sweeping frequency of 639 Hz. Overall this paper demonstrates that the conditional approach is very useful for understanding the physics of flow control actuators. (C) 2019 Elsevier B.V. All rights reserved.
机译:扫描喷气机是一种新兴类型的执行器,由于它们在流量控制应用中的潜在使用而产生了兴趣。这些装置的工作原理基于射流与相邻壁的双稳态附接。它们能够在各种工作频率内产生不稳定的吹吹。然而,最先进的技术表明这些致动器的时空表征用于高扫描频率。本文介绍了一种条件方法,该方法重建扫描喷射器的空间动力响应,以便扫描频率高于500Hz。使用两个单热线传感器测量时间依赖的速度:放置在出口喷嘴边缘的基准,以及飞行。然后测试该方法以表征内部扫描夹具致动器的出口喷嘴的流量,具有1mm空间分辨率和50μs的时间分辨率。这些测量以639 Hz的扫描频率进行。总体而言,本文表明,条件方法对于了解流量控制执行器的物理非常有用。 (c)2019 Elsevier B.v.保留所有权利。

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