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Virtual wall oscillations forced by a DBD plasma actuator operating under beat frequency - a concept for turbulent drag reduction

机译:虚拟墙振荡被DBD等离子执行器在拍频下运行 - 湍流减阻的概念

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A modified concept for generating DBD-based virtual spanwise wall oscillations is introduced in continuation of earlier efforts by Hehner et al. (2019) ["Stokes-layer formation under absence of moving parts - A novel oscillatory plasma actuator design for turbulent drag reduction", Phys. Fluids 31, 051701]. Four groups of a multi-electrode actuator array are operated at interfering high-voltage signals to achieve an oscillating discharge intensity at 50 Hz beat frequency. The resulting velocity fields have been recorded with time-resolved planar high-speed particle image velocimetry so as to analyse the induced flow topology and wall-normal velocity profiles. A direct comparison of the results to Hehner et al. (2019) has indicated favourable effects of the new concept in terms of flow topology (i.e improved spanwise flow homogeneity, velocity magnitude increase and reduced lift-off), which renders the new operation concept of the actuator array particularly promising for Stokes-layer-like flow formations and, consequently, for turbulent drag reduction over a range of Reynolds numbers.
机译:通过Hehner等人的持续努力,引入了一种用于生成基于DBD的虚拟假期壁振荡的修改概念。 (2019)[“在不存在动作部件的斯托克莱层形成 - 一种新的振动等离子体执行器设计,用于湍流减阻”,物理。流体31,051701]。在干扰高压信号时操作四组多电极致动器阵列,以在50 Hz频率下实现振荡放电强度。已经用时间分辨的平面高速粒子图像速度记录了所得到的速度场,以分析诱导的流动拓扑和壁正常速度谱。直接比较结果对赫恩等人。 (2019)已经表明了新概念在流动拓扑方面对新概念的有利影响(即改善了血管流动均匀性,速度幅度增加和减少剥离),这使得执行器阵列的新操作概念尤其承诺 - 与流动形成一样,因此,在一系列雷诺数减少湍流阻力。

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