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The effect of jet pulsation on the flow field of a round impinging jet and the radially expanding wall jet

机译:喷射脉动对圆形撞击射流流动场的影响及径向膨胀壁射流

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A pulsating round jet having a constant average mass flow rate may increase heat transfer in comparison to a steady jet impinging on a surface. However, while several studies have focused on the heat transfer, flow field characteristics remain poorly understood. Here, the mean and turbulent flow characteristics of a pulsating, round jet impinging on a flat plate were measured using planar, phase-locked particle image velocimetry (PIV) and compared to those of a steady jet. The surface to jet nozzle stand-off distance equaled two nozzle diameters and Reynolds numbers based on the average steady jet exit velocity were Re = 4606, 8024 and 13,513. Jet exit velocities varied nearly sinusoidal and Strouhal numbers ranged between 2 x 10(-3) = Sr = 15.6 x 10(-3). The results indicate that jet pulsation did not affect the normalized, phase-averaged radial and axial velocity distributions in the impingement region and these could be predicted based on a quasi-steady assumption. However, at the center of the jet, rms values of radial and axial velocity fluctuations were enhanced at pulsation phases for which the jet exit velocity was lowest. In contrast, profiles of radial and axial velocity fluctuations and the Reynolds shear stress in the wall jet were significantly affected by jet pulsation. For the here investigated range of parameters, our results indicate that outer layer self-similarity in the wall jet is not attained when the jet is pulsating, and the wall jet cannot be treated as quasi-steady. (C) 2019 Elsevier Ltd. All rights reserved.
机译:与撞击表面上的稳定喷射相比,具有恒定平均质量流量的脉动圆形射流可以增加热传递。然而,虽然几项研究专注于传热,但流场特征仍然明白很差。这里,使用平面的锁相颗粒图像速度(PIV)测量脉动的平均和湍流,脉动,圆形射流,其撞击平板上,并与稳定喷射的射流相比。射流喷嘴的表面脱扣距离等于两个喷嘴直径,并且基于平均稳定喷射出口速度的雷诺数被重新= 4606,8024和13,513。喷射出口速度变化几乎是正弦波的,并且斯特鲁姆数字范围在2×10(-3)<= SR <= 15.6×10(-3)之间。结果表明,喷射脉动不影响冲击区域中的归一化,相平均径向和轴向速度分布,并且可以基于准稳态假设来预测这些。然而,在射流的中心,在喷射速度最低的脉动阶段,增强了径向和轴向速度波动的RMS值。相反,径向和轴向速度波动的曲线和壁射流中的雷诺剪切应力受到喷射脉动的显着影响。对于这里研究的参数范围,我们的结果表明,当射流脉动时,壁射流中的外层自相似性不达到,并且壁射流不能被视为准稳定。 (c)2019 Elsevier Ltd.保留所有权利。

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