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A novel fluidic oscillator incorporating step-shaped attachment walls

机译:包含阶梯形附接壁的新型流体振荡器

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摘要

A novel fluidic oscillator incorporating step-shaped attachment walls and acute-angle splitters has been designed and verified experimentally to stabilize the oscillation of circulation flow, to modify the flow patterns and to improve the performance. Focusing on various oscillators of plane-wall and step-wall designs, we systematically analyzed the pressure spectra, pressure loss, and flow structure, via particle-imaging velocimetry, flow visualization, and pressure sensors. The results reveal that the novel design promotes conditions to initiate the oscillator and makes the recirculation vortices oscillate more effectively and stably. The operating range of this step-wall oscillator is broadened and the ratio of signal to noise of the step oscillator is 17 times as great as that with plane walls at a greater flow rate, 65 L/min. Comparison of the wave form of the spectral analysis and the ratio of signal to noise over the entire experimental range further corroborates the superior features of the novel design.
机译:设计并验证了一种结合了阶梯形附接壁和锐角分离器的新型流体振荡器,以稳定循环流的振荡,修改流型并改善性能。着重于平面壁和阶梯壁设计的各种振荡器,我们通过粒子成像测速,流量可视化和压力传感器系统地分析了压力谱,压力损失和流动结构。结果表明,新颖的设计促进了启动振荡器的条件,并使再循环涡流更有效,更稳定地振荡。该阶梯壁振荡器的工作范围得到了扩展,阶梯振荡器的信噪比是平面壁,流速为65 L / min时的信噪比是17倍。在整个实验范围内比较频谱分析的波形和信噪比,进一步证实了该新颖设计的卓越功能。

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