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Numerical modelling the influence of gas distributors on gas-liquid flow and mixing in a bubble column

机译:气体分配器对气液流动对气体液体流动影响的数值模型

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Numerical simulations of gas-liquid flow in a cylindrical bubble column of 400mm with two-fluid approach and MUSIG model were conducted at high superficial gas velocity Ug=0.10m/s for eight gas distributors to investigate the influence of sparger designs on hydrodynamic, gas hold-up, mixing, turbulence and mixing time. The simulation results showed that the effect of sparger designs on liquid velocity and local gas holdup are significant in the sparger region. The comprehensive comparison of gas-liquid interfacial area and mixing time shows that the none of the considered spargers could not only produce the highest interfacial area but also yields the shortest mixing time. The modelling results also suggest that the more gas pipes are beneficial to increase the gas hold-up but harmful to reduce bubble size due to decreasing of turbulent kinetic dissipation,the asymmetrical structure and smaller circle diameter of gas pipes are profitable to enhance liquid mixing.
机译:在高浅表气体速度UG = 0.10m / s中,在八个气体分配器的高浅表气体速度UG = 0.10m / s中进行400mm圆柱形气泡柱的数值模拟。八个气体分配器,以研究Sparger设计对流体动力学,气体的影响保持,混合,湍流和混合时间。仿真结果表明,喷射仪区域在液体速度和局部气体堆叠上的施用在液体速度和局部气体堆积中的影响。气液界面和混合时间的全面比较表明,所考虑的练习剂中的任何一个都不能产生最高的界面区域,而且还产生最短的混合时间。建模结果还表明,由于湍流动力学耗散的降低,越来越多的气体管道可以增加气体升压但有害以降低气泡尺寸,但是气体管的不对称结构和较小的圆形直径是有利可图的,以增强液体混合。

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