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Hydrodynamics and design of gas distributor in large-scale amine absorbers using computational fluid dynamics

机译:大型胺吸收塔的流体动力学和气体分布器的计算流体动力学设计

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A gas phase three-dimensional (3D) computational fluid dynamics (CFD) model was developed to investigate the hydrodynamics of gas distributors used in an amine absorber with a diameter of 3.2 m. A standard gas inlet, tubular injectors with short, medium and long lengths, and a Schoepentoeter were considered as feed systems of the gas distributors. The pressure drop, dead-area ratio and coefficient of distribution at the packing entry were used as the performance indexes of the gas distributors. The down-pipe as a liquid collector exhibited a lower dead-area ratio when compared with that of the down-comer. The tubular gas injector with a short length reduced the dead-area ratio and the gas maldistribution. The Schoepentoeter was associated with the lowest pressure drop, dead-area ratio, and coefficient of distribution among the gas distributors. The uniformity of gas distribution was enhanced by 25% in the Schoepentoeter when compared to that of the tubular gas injector.
机译:建立了气相三维(3D)计算流体动力学(CFD)模型,以研究直径为3.2 m的胺吸收塔中使用的气体分配器的流体动力学。气体分配器的进料系统被认为是标准的进气口,短,中,长长度的管状喷射器和Schoepentoeter。填料入口处的压降,死面积比和分布系数被用作气体分配器的性能指标。与下导管相比,作为集液器的下管显示出较低的死面积比。长度短的管状气体注射器减少了死面积比和气体分布不均。 Schoepentoeter与最低的压降,死面积比和气体分配器之间的分配系数有关。与管状气体注射器相比,Schoepentoeter的气体分布均匀性提高了25%。

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