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首页> 外文期刊>Journal of Fluid Mechanics >Active control of high-speed and high-Reynolds-number jets using plasma actuators
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Active control of high-speed and high-Reynolds-number jets using plasma actuators

机译:使用等离子执行器主动控制高速和高雷诺数喷嘴

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摘要

Localized arc filament plasma actuators are used to control an axisymmetric Mach 1.3 ideally expanded jet of 2.54cm exit diameter and a Reynolds number based on the nozzle exit diameter of about 1.1 X 10(6). Measurements of growth and decay of perturbations seeded in the flow by the actuators, laser-based planar flow visualizations, and particle imaging velocimetry measurements are used to evaluate the effects of control. Eight actuators distributed azimuthally inside the nozzle, approximately 1 mm upstream of the nozzle exit, are used to force various azimuthal modes over a large frequency range (St(DF) of 0.13 to 1.3). The jet responded to the forcing over the entire range of frequencies, but the response was optimum (in terms of the development of large coherent structures and mixing enhancement) around the jet preferred Strouhal number of 0.33 (f = 5 kHz), in good agreement with the results in the literature for low-speed and low-Reynolds-number jets. The jet (with a thin boundary layer, D/theta similar to 250) also responded to forcing with various azimuthal modes (m = 0 to 3 and m = +/- 1, +/- 2, +/- 4), again in agreement with instability analysis and experimental resu; in the literature for low-speed and low-Reynolds-number jets. Forcing the jet with the azimuthal mode m = +/- 1 at the jet preferred-mode frequency provided the maximum mixing enhancement, with a significant reduction in the jet potential core length and a significant increase in the jet centreline velocity decay rate beyond the end of the potential core.
机译:局部电弧丝等离子体致动器用于控制出口直径2.54cm的轴对称Mach 1.3理想膨胀射流和基于约1.1 X 10(6)的喷嘴出口直径的雷诺数。通过执行器,基于激光的平面流可视化以及粒子成像测速仪测量,可以测量致动器在种子中产生的扰动的增长和衰减,以评估控制效果。在喷嘴出口上游约1毫米处,在喷嘴内方位角分布的八个执行器用于在较大的频率范围(St(DF)为0.13至1.3)上施加各种方位角模式。射流对整个频率范围内的强迫都做出了响应,但是在射流首选斯特劳哈尔数0.33(f = 5 kHz)周围,响应是最佳的(就大型相干结构的发展和混合增强而言)低速和低雷诺数喷气机的文献结果。射流(具有薄的边界层,D /θ类似于250)也再次以各种方位角模式(m = 0至3和m = +/- 1,+ /-2,+ /-4)响应强迫。与不稳定性分析和实验结果一致;在低速和低雷诺数喷气机的文献中。强制在首选模式频率下以方位角模式m = +/- 1进行喷射可最大程度地增强混合效果,大大降低了喷射电势的核心长度,并显着增加了超过终点的喷射中心线速度衰减率潜在核心。

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