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Scaling up Bubble Column Reactors with Highly Viscous Liquid Phase

机译:扩大泡罩塔反应堆与高度粘性液体

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摘要

Measurements of gas holdup were made in bubble columns of 0.1, 0.19 and 0.38m diameter with air as gas phase and Tellus oil as the liquid phase. The gas holdup was found to decrease with increasing column diameter. The reason for this scale dependence is because the strength of the liquid circulations increases with increasing scale. Such circulations accelerate the bubbles travelling upwards in the central core. Computational fluid dynamics (CFD) simulations were carried out using the Eulerian description for both the gas and the liquid phases in order to model the scale dependence of the hydrodynamics. Interactions between the bubbles and the liquid are taken into account in terms of a momentum exchange, or drag, coefficient; this coefficient was estimated from the measured gas holdup data at low superficial gas velocities. The turbulence in the liquid phase is described using the kappa-epsilon model. The CFD simulation results are in good agreement with the experimental results for all three columns and provide a reliable strategy for scaling up to reactors of commercial size.
机译:测量气体停滞在泡沫列的0.1、0.19和0.38米直径与空气随着气相液相和忒勒斯石油。减少气体抢劫被发现增加立柱直径。是因为规模依赖的力量液体发行量增加而增加规模。向上移动的核心。计算流体力学(CFD)模拟进行了用欧拉描述吗气体和液体阶段模型的规模依赖流体动力学。和液体方面的考虑动量交换,或拖动系数;系数估计的测量气体持枪抢劫的数据在低表面气体速度。液相的湍流使用kappa epsilon模型。结果是在良好的协议实验结果为所有三个列和提供一个可靠的策略来扩大反应堆的商业规模。

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