Abstract Lift improvements using duty-cycled plasma actuation at low Reynolds numbers
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Lift improvements using duty-cycled plasma actuation at low Reynolds numbers

机译:在低雷诺数下使用占空比等离子体驱动来改善举升

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AbstractAn experimental study on active flow control over an elliptic airfoil is performed using an alternating-current dielectric-barrier-discharge (AC-DBD) plasma actuator combined with the duty-cycled technique. This study aims to eliminate or decrease the nonlinearities of the lift curves within a range of small angles of attack at low Reynolds numbers. The results of plasma actuator characterization in the quiescent air show that the duty-cycled plasma actuation can generate periodic sustained vortices with strengthened vorticity and streamwise momentum in comparison of steady-on mode. The wind tunnel test results show that the baseline airfoil exhibits the clearer nonlinear behavior at small AOA for lower Reynolds numbers. With duty-cycled plasma actuation, a rigidly linear proportional control of the lift that varies with the AOA is achieved with the reduced frequencyf+=1. The surface oil-flow measurement shows the plasma actuator can delay the separation and result in an enhanced lift when the laminar boundary layer separation occurs without reattachment. When the long laminar separation bubble appears in the trailing edge region, the plasma actuator can eliminate the bubble. In this case, the extra lift supplied by the bubble is eliminated, leading to a reduced airfoil lift. The linear proportional control of the lift can be achieved by the appropriate enhanced and reduced lift changes which can be supplied by the duty-cycled plasma actuation.
机译: 摘要 使用交流电介质阻挡放电(AC-DBD)等离子体致动器结合占空比控制,对椭圆型机翼进行主动流控制的实验研究循环技术。这项研究旨在消除或减少低雷诺数下小攻角范围内升力曲线的非线性。静态空气中等离子体致动器表征的结果表明,与稳态模式相比,占空比等离子体致动器可以产生周期性的持续涡流,涡流和流动量都得到增强。风洞测试结果表明,对于较低的雷诺数,基线翼型在较小的AOA下表现出更清晰的非线性行为。通过占空比式等离子驱动,可以通过降低频率 f + = 1 。表面油流测量显示,当层流边界层发生分离而无需重新连接时,等离子体致动器可以延迟分离并提高升力。当长的层状分离气泡出现在后缘区域中时,等离子体致动器可以消除气泡。在这种情况下,消除了气泡提供的额外升力,从而减小了翼型升力。升程的线性比例控制可以通过适当的增强和减小的升程变化来实现,这可以通过占空比等离子体驱动来提供。

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