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A phase averaged PIV study of circular and non-circular synthetic turbulent jets issuing from sharp edge orifices

机译:从尖锐边缘孔口发出圆形和非圆形合成湍流喷射的相平均PIV研究

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An extensive experimental study using Particle Image Velocimetry (PFV) on synthetic jets issuing from different orifice shapes is reported. All data are phase and time averaged to derive mean velocity, half-velocity width and rms velocity profiles in the near field of the jet (0 < X/D < 7), at a Reynolds number around 10,000. Different non-circular orifice shapes as rectangular, square, elliptic and triangular are considered and results are compared to those of the circular orifice in order to investigate the effect of asymmetry on the turbulent flow field in view of mixing enhancement. The measurements are carried out on two orthogonal planes to capture three dimensional features of non-circular jets. Results show highest velocity decay rate for elongated orifices, especially the rectangular one, in comparison to the circular one, both in phase and time-averaged plots. Time averaged results show higher velocity decay rate of synthetic jets in comparison to those of continuous ones. It is also observed that, for X/D > 5, only profiles of circular and square jets become partially self-similar. For synthetic jets, higher turbulence content is measured for all orifice shapes at the centerline and close to the orifice exit in comparison to continuous jets.
机译:报道了使用从不同孔口形状发出的合成喷射器上的粒子图像速度(PFV)进行了广泛的实验研究。所有数据都是阶段和时间平均,以导出射流的近场(0 5,仅圆形和方形喷射的简档变得部分是自相似的。对于合成射流,针对中心线处的所有孔口形状测量更高的湍流含量,与连续喷射相比,靠近孔口出口。

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