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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Simultaneous velocity and concentration field measurements of passive-scalar mixing in a confined rectangular jet
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Simultaneous velocity and concentration field measurements of passive-scalar mixing in a confined rectangular jet

机译:密闭矩形射流中被动标量混合的同时速度和浓度场测量

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Simultaneous velocity and concentration fields in a confined liquid-phase rectangular jet with a Reynolds number based on the hydraulic diameter of 50,000 (or 10,000 based on the velocity difference between streams and the jet exit dimension) and a Schmidt number of 1,250 were obtained by means of a combined particle image velocimetry (PIV) and planar laser-induced fluorescence (PLIF) system. Data were collected at the jet exit and six further downstream locations. The velocity and concentration field data were analyzed for flow statistics such as turbulent fluxes, turbulent viscosity and diffusivity, and turbulent Schmidt number (Sc-T ). The streamwise turbulent flux was found to be larger than the transverse turbulent flux, and the mean concentration gradient was not aligned with the turbulent flux vector. The average Sc-T was found to vary both in streamwise and in cross stream directions and had a mean value around 0.8, a value consistent with the literature. Spatial correlation fields of turbulent fluxes and concentration were then determined. The R-u'phi' correlation was elliptical in shape with a major axis tilted downward with respect to the streamwise axis, whereas the R-v'phi' correlation was an ellipse with a major axis aligned with the cross-stream direction. Negative regions of R-u'phi' were observed in the outer streams, and these negatively correlated regions decayed with downstream distance and finally disappeared altogether. The R-phi'phi' correlation field was found to be an ellipse with the major axis inclined at about 45 degrees with respect to the streamwise direction. Linear stochastic estimation was used to interpret spatial correlation data and to determine conditional flow structures. It is believed that a vortex street formed near the splitter plate is responsible for the negatively correlated region observed in the R-u'phi' spatial correlations of turbulent fluxes. A positive concentration fluctuation event was observed to correspond to a finger of nearly uniform concentration fluid reaching out into the outer stream, whereas a negative event corresponds to a pocket of nearly uniform fluid being entrained from the outer stream into the center jet region. Large-scale vortical structures were observed in the conditional velocity fields with an elliptical shape and a streamwise major axis. The growth of the structure size increased linearly initially but then grew more slowly as the flow transitioned toward channel flow.
机译:密闭液相矩形射流的同时速度和浓度场的雷诺数基于水力直径50,000(或基于流之间的速度差和射流出口尺寸为10,000),而施密特数为1,250粒子图像测速(PIV)和平面激光诱导荧光(PLIF)系统的组合。在喷气机出口和另外六个下游位置收集了数据。分析了速度和浓度场数据以进行流动统计,例如湍流,湍流粘度和扩散率以及湍流施密特数(Sc-T)。发现沿流的湍流通量大于横向的湍流通量,并且平均浓度梯度与湍流通量向量不对齐。发现平均Sc-T在流向和横向都变化,其平均值约为0.8,该值与文献一致。然后确定湍流和浓度的空间相关性。 R-u'phi'相关性是椭圆形,其长轴相对于流向轴向下倾斜,而R-v'phi'相关性是椭圆形,其长轴与横流方向对齐。在外流中观察到了R-u'phi'的负区域,这些负相关的区域随着下游距离的衰减而最终消失。发现R-phi'phi'相关场是椭圆,其长轴相对于流向倾斜大约45度。线性随机估计用于解释空间相关数据并确定条件流动结构。可以认为,在隔板附近形成的涡街是在湍流的R-u'phi'空间相关性中观察到的负相关区域的原因。观察到正浓度波动事件对应于接近均匀浓度的流体伸入外流的指,而负事件对应于几乎均匀流体从外部流夹带到中心射流区域的囊。在条件速度场中观察到具有椭圆形和沿水流方向的长轴的大规模旋涡结构。结构尺寸的增长最初呈线性增长,但随后随着流向通道流的过渡而增长得更慢。

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