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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Effect of drag correlation and bubble-induced turbulence closure on the gas hold-up in a bubble column reactor
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Effect of drag correlation and bubble-induced turbulence closure on the gas hold-up in a bubble column reactor

机译:拖曳相关和气泡诱导湍流闭合在气泡柱反应器中气体挤出的影响

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BACKGROUND Gas-liquid hydrodynamics play an important role in processes across a wide range of applications in chemical technology and biotechnology. In most of these applications, gas is bubbled in the bottom of the reactor to conduct physical mixing or mixing-induced chemical reaction. In either case, the gas bubble hydrodynamics play a critical role on the overall performance of these processes. In the present study, the gas-liquid multiphase system is simulated using a Eulerian-Eulerian two-fluid Computational Fluid Dynamics (CFD) model. RESULTS The physical model is a cylindrical bubble column contactor wherein gas is sparged into liquid through a perforated sparger with a superficial gas velocity of approximate to 3-40 cm s(-1). The CFD model for the contactor is built using the free and open source tool OpenFOAM v.4.0 to simulate the gas-liquid system. The time-averaged volume fraction distribution was studied at different heights in the column. The effect of drag force and bubble-induced turbulence are studied to arrive at appropriate closures for the CFD model. The results obtained from the numerical simulations were validated against available experimental results found in literature. CONCLUSION The recommended models, based on the present CFD study of the bubble column reactor, are the Ishii-Zuber drag closure with the modification that the parameter p is set to 2 for superficial gas velocities <= 20 cm s(-1) and is set to 4 for 40 cm s(-1) superficial gas velocity) and the mixed k-epsilon model to account for drag correlation and bubble-induced turbulence closure, respectively. (c) 2019 Society of Chemical Industry
机译:背景技术气液流体动力学在化学技术和生物技术的各种应用中发挥着重要作用。在大多数这些应用中,气体鼓泡在反应器的底部以进行物理混合或混合诱导的化学反应。在任何一种情况下,气泡流体动力学都在对这些过程的整体性能起到关键作用。在本研究中,使用Eulerian-Eulerian两种流体计算流体动力学(CFD)模型来模拟气液多相体系。结果物理模型是圆柱形气泡柱接触器,其中气体通过穿孔喷射器喷射到液体中,具有浅于3-40cm S(-1)的浅表气体速度。接触器的CFD模型是使用自由和开源工具OpenFoam V.4.0建造的,以模拟气液系统。在柱中的不同高度中研究了时间平均体积分量分布。研究了拖曳力和气泡诱导的湍流的影响,以获得CFD模型的适当封闭。根据在文献中发现的可用实验结果验证了从数值模拟中获得的结果。结论推荐的型号基于本发明的泡沫柱反应器的CFD研究,是ISHII-Zuber拖曳闭合,随着浅表的浅表P.浅表气体速度<= 20cms(-1),是设定为40cm S(-1)浅表气体速度)和混合k-epsilon模型,以分别用于拖曳相关和气泡诱导的湍流闭合。 (c)2019年化学工业协会

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