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首页> 外文期刊>Journal of Engineering Mechanics >Particle Image Velocimetry Measurements of the Mean Flow Characteristics in a Bubble Plume
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Particle Image Velocimetry Measurements of the Mean Flow Characteristics in a Bubble Plume

机译:气泡羽流中平均流动特性的粒子图像测速测量

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摘要

A direct measurement method for the velocity field in multiphase flows using the particle image velocimetry (PIV) and particle tracking velocimetry (PTV) methods is developed to study the flow characteristics of an unbounded bubble plume in quiescent, unstratified ambient conditions. A single camera is used to obtain images containing both bubbles and fluid tracer particles. Using gray-scale thresholding, phase-separated images of the bubbles are produced, and bubble velocities are obtained from these images using the standard PTV method. Regular PIV is applied to the mixed fluid images, and bubble vectors are removed using a velocity threshold and vector median filter that is calibrated to the PTV result. From the separate velocity fields, the time-averaged flow characteristics of a bubble plume are studied. Gaussian velocity profiles match the entrained fluid velocity, and top-hat velocity profiles match the bubble velocity. Time-averaged values are also presented of velocity, plume width, entrained fluid volume flux, and void fraction as a function of height. From these data, the entrainment coefficient for the entrained ambient fluid is calculated and lies between 0.08 near the plume source and 0.05 in the upper reaches. The results for the entrainment coefficient, together with those from the literature, are correlated to a nondimensional velocity, given by the ratio of the bubble slip velocity us to a characteristic velocity in the plume (B/z)1/3, where B=kinematic buoyancy flux and z is the height above the source.
机译:为了研究无边界气泡羽流在静态,无分层环境条件下的流动特性,开发了一种直接使用粒子图像测速(PIV)和粒子跟踪测速(PTV)方法测量多相流速度场的方法。使用单个照相机来获取同时包含气泡和流体示踪剂颗粒的图​​像。使用灰度阈值化,可以生成气泡的相分离图像,并使用标准PTV方法从这些图像中获得气泡速度。将常规PIV应用于混合后的流体图像,并使用速度阈值和针对PTV结果校准的矢量中值滤波器去除气泡矢量。从单独的速度场,研究了气泡羽流的时间平均流动特性。高斯速度剖面与夹带的流体速度匹配,大礼帽速度剖面与气泡速度匹配。还给出了时间平均值,速度,羽流宽度,夹带的流体体积通量和空隙率随高度的变化。根据这些数据,计算出所夹带的环境流体的夹带系数,该夹带系数在羽流源附近为0.08,在上游为0.05。夹带系数的结果以及文献中的结果与无量纲速度相关,该无量纲速度由气泡滑移速度us与羽流中特征速度的比率(B / z)1/3给出,其中B =运动浮力通量,z为源上方的高度。

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