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Computational Fluid Dynamics-Population Balance Modeling of Gas-Liquid Two-Phase Flow in Bubble Column Reactors With an Improved Breakup Kernel Accounting for Bubble Shape Variations

机译:泡沫柱反应器中燃气液两相流量的计算流体动力学群体平衡建模泡沫变化

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摘要

Traditionally, bubble shapes have been assumed to be spherical in breakup models such as the one developed by Luo and Svendsen in 1996. This particular breakup model has been widely accepted and implemented into computational fluid dynamics (CFD) modeling of gas-liquid two-phase flows. However, simulation results from this model usually provide unreliable predictions about the breakage of very small bubbles. The incorporation of bubble shape variation into breakup models has rarely been documented in literature but the bubble shape plays an important role in the interactions with the surrounding eddies, especially when the effects of bubble deformation, distortion, and bubble internal pressure change are considered during the events of eddy-bubble collision. Thus, the assumption of spherical bubbles seems to be no longer appropriate in reflecting this phenomenon. This study proposes and implements a modified bubble breakup model, which accounts for the variation of bubble shapes when solving the population balance equations for CFD simulation of gas-liquid two-phase flows in bubble columns. The key parameters predicted by the modified breakup model have been compared with the ones predicted by the original model. The simulation results of interfacial area and mass transfer coefficient for larger bubbles have been greatly enhanced by the modified breakup model.
机译:传统上,已经假设泡沫形状是在1996年由罗和Svendsen开发的破碎模型的球形。该特殊分析模型已被广泛接受并实施到煤气 - 液体两相的计算流体动力学(CFD)建模中流动。然而,该模型的模拟结果通常提供关于非常小气泡的破损的不可靠的预测。在文献中,将气泡形状变化的掺入很少在文献中记录,但是气泡形状在与周围漩涡的相互作用中起重要作用,特别是当在期间考虑气泡变形,变形和气泡内部压力变化的影响时涡流碰撞事件。因此,球形气泡的假设似乎不再适合反映这种现象。该研究提出并实现了改进的泡沫破碎模型,其考虑了求解泡沫柱中气液两相流量的CFD模拟的群体平衡方程时的气泡形状的变化。将修改的分发模型预测的关键参数与原始模型预测的那些进行了比较。通过改进的分离模型大大提高了界面区域和大规模转移系数的界面区域和大规模转移系数的仿真结果。

著录项

  • 来源
    《Heat Transfer Engineering》 |2020年第18期|1414-1430|共17页
  • 作者单位

    Department of Mechanical Materials and Manufacturing Engineering The University of Nottingham Ningbo China Ningbo China;

    School of Mathematical Sciences The University of Nottingham Ningbo China Ningbo China;

    Department of Mechanical Materials and Manufacturing Engineering The University of Nottingham Ningbo China Ningbo China;

    State Key Laboratory of Chemical Engineering East China University of Science and Technology Shanghai China;

    Department of Mechanical Materials and Manufacturing Engineering The University of Nottingham Ningbo China Ningbo China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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