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Effect of gas expansion on the velocity of a Taylor bubble: PIV measurements

机译:气体膨胀对泰勒气泡速度的影响:PIV测量

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摘要

The effect of gas expansion on the velocity of a Taylor bubble was studied experimentally. The velocity field in the liquid ahead of a Taylor bubble was measured by particle image velocimetry (PIV), and the bubble velocity was measured with two pairs of laser diodes and photocells. The experiments were done in a 7.0 m long vertical tube with a 32 mm internal diameter. Solutions of carboxymethylcellulose (CMC) polymer with weight percentages between 0.01% and 0.1% were used. The expansion of slug gas induces an increase in the bubble velocity and a corresponding displacement of the liquid ahead of the bubble. The velocity of the bubble increases by an amount equal to the maximum velocity in the liquid displaced. For the solutions studied, the induced velocity profile was parabolic and the bubble velocity increase was equal to the liquid velocity at the tube axis, i.e., twice the mean velocity in the liquid displaced. The corrected velocity obtained by subtracting the velocity increase from the value of the bubble velocity is independent of the bubble length. (c) 2006 Elsevier Ltd. All rights reserved.
机译:实验研究了气体膨胀对泰勒气泡速度的影响。通过粒子图像测速仪(PIV)测量泰勒气泡之前的液体中的速度场,并使用两对激光二极管和光电管测量气泡速度。实验是在7.0 m长,内径为32 mm的垂直管中进行的。使用重量百分比在0.01%和0.1%之间的羧甲基纤维素(CMC)聚合物溶液。团状气体的膨胀引起气泡速度的增加以及气泡之前液体的相应位移。气泡的速度增加的量等于被置换液体中的最大速度。对于所研究的解决方案,诱导的速度分布曲线是抛物线形的,气泡速度的增加等于管轴上的液体速度,即被置换液体中平均速度的两倍。通过从气泡速度的值中减去速度增加而获得的校正速度与气泡长度无关。 (c)2006 Elsevier Ltd.保留所有权利。

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