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Investigation of passive scalar mixing in a confined rectangular wake using simultaneous PIV and PLIF

机译:使用同时PIV和PLIF研究密闭矩形尾流中的被动标量混合

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A combined particle image velocimetry (PIV) and planar laser-induced fluorescence (PLIF) system was employed to investigate the turbulent mixing in a confined liquid-phase rectangular-wake flow with a Reynolds number based on hydraulic diameter of 37,500 and a Schmidt number of 1250. The simultaneous velocity and concentration field data were analyzed for flow statistics such as turbulent fluxes, turbulent viscosity and diffusivity, and turbulent Schimdt number. The stream wise and transverse turbulent fluxes were found to be of the same magnitude. The turbulent flux vector was not aligned with the mean concentration gradient. The turbulent Schimdt number was about 0.8. The spatial correlations of turbulent fluxes and concentration fluctuations were evaluated. In the R-u'phi' correlation field, there were a positive and a negative vertically oriented elliptical correlation region, which were symmetric around the basis point. The R-v'phi' correlation region was a horizontally oriented ellipse with negative values of the correlation coefficient. The correlation field of R-phi'phi' was also an ellipse with a horizontal major axis. The behavior of large-scale structures in both the velocity and concentration field was studied using linear stochastic estimation with a defined event of concentration fluctuation. Vortex streets were observed in the estimated velocity fields. The streamwise growth of the structure size increased linearly initially but then grew more slowly. (C) 2010 Elsevier Ltd. All rights reserved.
机译:结合了粒子图像测速(PIV)和平面激光诱导荧光(PLIF)系统,研究了基于水力直径为37,500和施密特数为3的雷诺数的密闭液相矩形尾流中的湍流混合。 1250.分析了同时速度和浓度场数据的流量统计数据,例如湍流,湍流粘度和扩散率以及湍流Schimdt数。发现在水流方向和横向湍流的大小相同。湍流矢量与平均浓度梯度不一致。 Schimdt湍流数约为0.8。评估了湍流和浓度波动的空间相关性。在R-u'phi'相关字段中,存在一个正负的垂直椭圆相关区域,它们在基点周围对称。 R-v'phi'相关区域是一个相关系数为负值的水平椭圆。 R-phi'phi'的相关场也是具有水平主轴的椭圆。使用线性随机估计和浓度波动的定义事件,研究了大型结构在速度场和浓度场中的行为。在估计的速度场中观察到涡街。结构尺寸的沿流方向的增长最初呈线性增长,但随后增长缓慢。 (C)2010 Elsevier Ltd.保留所有权利。

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