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Dynamic Behavior of Printed-Circuits Plasma Actuator Based on DC Electrical Discharge: Application in Aerodynamics

机译:基于直流放电的印刷电路等离子体致动器的动态行为:在空气动力学中的应用

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This paper deals with the electrohydrodynamic airflow control realized by the kinetic energy provided by an electrical discharge created at the surface of a dielectric material. We will present the results of the airflow control above an NACA0015 profile, this application is ensured by the action of the ionic wind generated by an applied dc corona discharge. The actuation consists in creating a nonthermal plasma sheet at the NACA0015 suction side. Plasma is created between two electrodes flush-mounted on the surface of the airfoil and excited with a dc power supply. To highlight the effect of plasma actuator on the free airflow, we will present streamlines fields with plasma actuator ON and OFF. We will show that the plasma sheet can modify the size of the mean recirculation region and that it changes the flow topology. In addition, the observed velocity profiles above the NACA0015 highlight the reduction of the boundary layer thickness under the effect of the corona electrical discharge.
机译:本文涉及由在介电材料表面产生的放电提供的动能实现的电动流体动力学控制。我们将在NACA0015轮廓上方显示气流控制的结果,此应用通过施加的直流电晕放电产生的离子风的作用来确保。致动在于在NACA0015吸入侧创建一个非热等离子体板。在齐平安装在机翼表面并由直流电源激励的两个电极之间产生等离子体。为了突出等离子致动器对自由气流的影响,我们将介绍等离子致动器打开和关闭时的流线型场。我们将显示等离子板可以修改平均再循环区域的大小,并且可以改变流动拓扑。此外,在NACA0015上方观察到的速度曲线突出了在电晕放电作用下边界层厚度的减小。

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