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CFD simulation of effects of the configuration of gas distributors on gas-liquid flow and mixing in a bubble column

机译:CFD模拟气体分布器配置对气泡塔中气液流动和混合的影响

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Numerical simulations of gas-liquid flow in a cylindrical bubble column of 400 mm in diameter at the superficial gas velocity U_g = 0.10 m s~(- 1) were conducted to investigate effects of the configuration of gas distributors on hydrodynamic behaviour, gas hold-up and mixing characteristics. Eight different gas distributors were adopted in the simulation. The simulation results clearly show that the configuration of gas distributor have an important impact on liquid velocity and local gas hold-up in the vicinity of the gas distributor. Comparisons of the overall gas holdup and mixing time among different gas distributors have demonstrated that none of the adopted gas distributors was able to produce the highest interfacial area and also yield the shortest mixing time. The CFD modelling results reveal that an increase in the number of gas sparging pipes used in gas distributors is beneficial in improving the gas hold-up but is disadvantageous in reducing bubble size due to a decrease in turbulent kinetic dissipation. It has been demonstrated from the simulations that the appearance of asymmetrical flow patterns in the bubble column and the adoption of smaller gas sparging pipes for gas distributors are effective in improving the mixing characteristics.
机译:进行了在表面气速U_g = 0.10 ms〜(-1)下直径为400 mm的圆柱鼓泡塔内气液流动的数值模拟,以研究气体分配器的配置对流体力学行为,气体滞留率的影响和混合特性。模拟中采用了八种不同的气体分配器。模拟结果清楚地表明,气体分配器的配置对气体速度和气体分配器附近的局部气体滞留率具有重要影响。比较不同气体分配器之间的总气体滞留率和混合时间,可以证明采用的气体分配器中没有一个能够产生最大的界面面积,并且混合时间也最短。 CFD模型结果表明,用于气体分配器的气体喷射管数量的增加有利于改善气体滞留率,但由于湍流动力学耗散的减少而不利于减小气泡尺寸。从模拟中已经证明,气泡塔中不对称流动模式的出现以及气体分配器采用较小的气体喷射管对于改善混合特性是有效的。

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