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Experimental study on dielectric barrier discharge actuators operating in pulse mode

机译:介质阻挡放电致动器在脉冲模式下的实验研究

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摘要

An experimental investigation is performed on the operation of dielectric barrier discharge plasma actuators used as manipulators of secondary and unsteady flow structures such as boundary layer instabilities or shedding vortices. The actuators are tested mainly in pulse mode. High sample rate hot-wire measurements of the induced velocity field downstream of the actuator are taken for the cases of pulse actuation in still air as well as in a laminar boundary layer. Complementary voltage and current measurements are taken to calculate power consumption. Additionally, a study on the influence of the pulse frequency and duty cycle of actuation is performed. Results show the effectiveness of plasma actuators in inducing fluctuating components of velocity when operated in pulse mode. Spectral analysis reveals the connection between the actuator driving signal and the induced flowfield. The magnitude as well as the consistency of the resulting fluctuating field are dependent on both the duty cycle and the pulse frequency. An empirical operational envelope based on phenomenological observations is proposed, for the use of the actuators at specific flow and operational conditions given in the paper.
机译:对介质阻挡放电等离子体致动器的操作进行了实验研究,该致动器用作次级和非稳态流动结构(例如边界层的不稳定性或脱落涡流)的操纵器。执行器主要在脉冲模式下进行测试。对于在静止空气以及层状边界层中进行脉冲致动的情况,对致动器下游的感应速度场进行高采样率的热线测量。进行互补的电压和电流测量以计算功耗。另外,对脉冲频率和驱动占空比的影响进行了研究。结果表明,当以脉冲模式运行时,等离子作动器在诱导速度波动分量方面是有效的。频谱分析揭示了执行器驱动信号与感应流场之间的联系。所产生的波动场的大小和一致性取决于占空比和脉冲频率。提出了一种基于现象学观察的经验性操作范围,用于在本文给出的特定流量和操作条件下使用执行器。

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