首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Time-resolved stereo PIV measurements in the far-field of a turbulent zero-net-mass-flux jet
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Time-resolved stereo PIV measurements in the far-field of a turbulent zero-net-mass-flux jet

机译:湍流零净质量通量射流远场中的时间分辨立体PIV测量

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This paper presents time-averaged and temporally evolving mean flow and turbulence statistics for a turbulent zero-net-mass-flux (ZNMF) jet at high Reynolds and Strouhal numbers in the far-field in a plane perpendicular to the jet axis. The measurements have been obtained using time-resolved stereo particle image velocimetry (TR-SPIV). The jet is generated by the oscillation of a piston, which discharges filtered water to the quiescent fluid in a tank through a round orifice. A multigrid cross correlation digital particle image velocimetry algorithm (MCCDPIV) has been used to compute the images from each camera that subsequently have been combined to obtain the three components of the velocity. Velocity and turbulence statistics are in good agreement with results obtained in previous work. A comparative study has been performed to determine the contribution to the spreading rate due to the displacement of the center of the jet as rigid body. Different criteria to define the instantaneous jet center have been considered. For the different cases carried out for this study it has been observed that subtracting the movement as a rigid body the width of the jet becomes similar to that of a continuous jet. Velocity fluctuation statistics are also influenced by this restriction. The image series have also been analyzed to determine the temporal evolution of the velocity field and its fluctuations. The fast Fourier transforms (FFT) have been used to calculate the power spectra of these variables.
机译:本文介绍了在垂直于射流轴的平面中,在远场具有高雷诺数和斯特劳哈尔数的湍流零净质量通量(ZNMF)射流的时间平均和时间演化平均湍流统计。使用时间分辨立体粒子图像测速仪(TR-SPIV)获得了测量结果。射流是由活塞的振荡产生的,该活塞通过圆孔将过滤后的水排放到储罐中的静态流体中。多网格互相关数字粒子图像测速算法(MCCDPIV)已用于计算来自每个摄像机的图像,这些图像随后已合并以获得速度的三个分量。速度和湍流统计与先前工作中获得的结果非常吻合。已经进行了比较研究,以确定由于作为刚性体的射流中心的位移而导致的对扩散速率的影响。已经考虑了用于定义瞬时射流中心的不同标准。对于本研究进行的不同情况,已经观察到,减去运动作为刚体,射流的宽度变得类似于连续射流的宽度。速度波动统计也受此限制的影响。还对图像序列进行了分析,以确定速度场的时间演化及其波动。快速傅里叶变换(FFT)已用于计算这些变量的功率谱。

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