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Experimental study and numerical simulation with a coupled CFD-PBM model of the effect of liquid viscosity in a bubble column

机译:CFD-PBM耦合模型对鼓泡塔中液体粘度影响的实验研究和数值模拟

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The effect of liquid viscosity on the hydrodynamic behavior in a bubble column was investigated by experimental study and numerical simulation with a coupled CFD-PBM (population balance model) model. The total gas holdup and volume fractions of small and large bubbles were determined by the dynamic gas disengagement method. In the low viscosity range, the total gas holdup and the volume fractions of small and large bubbles were almost independent of the liquid viscosity. In the high viscosity range, an increased viscosity gave a decrease in the total gas holdup and volume fraction of small bubbles and an increase in the volume fraction of large bubbles. The simulation captured these features and showed that when the liquid viscosity was <10. mPa. s, the viscosity had negligible effect on the bubble breakup rate and daughter bubble size distribution, while a further increase of the liquid viscosity significantly decreased the bubble breakup rate and increased the probability of equal breakup. The influence of liquid viscosity on bubble coalescence was less important than its effect on bubble breakup for the hydrodynamic behavior. With the use of the multiple bubble breakup and coalescence models and the use of the bubble size distribution to describe the interphase forces, the coupled CFD-PBM model could describe the dependences of the total gas holdup and volume fractions of small and large bubbles on liquid viscosity in both the homogeneous and heterogeneous regimes.
机译:通过实验研究和耦合CFD-PBM(种群平衡模型)模型的数值模拟,研究了液体粘度对鼓泡塔内流体力学行为的影响。通过动态气体分离方法确定总的气体滞留率和小气泡和大气泡的体积分数。在低粘度范围内,总气体滞留率以及小气泡和大气泡的体积分数几乎与液体粘度无关。在高粘度范围内,粘度的增加使总气体滞留量和小气泡的体积分数减少,而大气泡的体积分数增加。模拟捕获了这些特征,并显示出当液体粘度小于10时。兆帕s,粘度对气泡破裂速率和子气泡尺寸分布的影响可忽略不计,而液体粘度的进一步增加显着降低了气泡破裂速率并增加了相等破裂的可能性。对于流体动力学行为,液体粘度对气泡聚结的影响不如其对气泡破裂的影响重要。通过使用多个气泡破裂和合并模型以及使用气泡大小分布来描述相间力,耦合的CFD-PBM模型可以描述总持气量和大小气泡对液体的依赖性均质和非均质状态下的粘度。

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