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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Straight and curved type micro dielectric barrier discharge plasma actuators for active flow control
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Straight and curved type micro dielectric barrier discharge plasma actuators for active flow control

机译:用于主动流量控制的直线和弯曲型微介质屏障放电等离子体致动器

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摘要

We develop micro dielectric barrier discharge plasma actuators (DBD-PAs) for active flow control under low external flow conditions. Our micro DBD-PA consists of thin dielectric material and electrodes having a small width and shape variation in the span-wise direction. The fundamental characteristics of the induced flow structures and the effectiveness of the micro DBD-PAs for separated flow over an airfoil are experimentally studied. The flow structures induced by a straight and a curved type micro DBD-PAs in quiescent air are visualized by the tracer method and processed by particle image velocimetry technique. It is found that the curved type DBD-PA produces three-dimensional flow structures as the results of counter flows that impinge each other. For the separation control of the airfoil flow, the angle of attack and free-stream velocities are set to 7.5 degrees and 2 and 3 m/s, respectively. Results present that the separation is successfully suppressed by the use of the curved type micro DBD-PA and the curved type micro DBD-PA shows better capability in comparison with that of the straight type micro DBD-PA due to the induced flow structures. (C) 2017 Elsevier Inc. All rights reserved.
机译:我们在低外流条件下开发微介质屏障放电等离子体致动器(DBD-PAS),用于在低外流条件下进行主动流量控制。我们的微型DBD-PA由薄介质材料和具有小宽度和跨度方向的形状变化的电极组成。实验研究了诱导的流动结构的基本特征和微DBD-PAS在翼型上进行分离的流动的有效性。由静态空气中的直线和弯曲型微DBD-PA感应的流动结构通过示踪方法可视化并通过粒子图像速度技术处理。发现弯曲型DBD-PA产生三维流动结构,因为彼此冲击的计数器流量的结果。对于翼型流的分离控制,攻击角和自由流速度分别设定为7.5度和2和3米/秒。结果显示,通过使用弯曲型微DBD-PA成功抑制分离,并且弯曲型微DBD-PA与由于诱导的流动结构为直线型微DBD-PA的弯曲型微DBD-PA表示更好的能力。 (c)2017年Elsevier Inc.保留所有权利。

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