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General correlations for gas-liquid mass transfer in laminar slug flow

机译:层流块流动气液传质的一般相关性

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摘要

Mass transfer is an important phenomenon that can be highly leveraged through hydrodynamics. Slug flow is frequently associated with the enhancement in transport phenomena, and so, mass transfer from a single Taylor bubble to the flowing liquid is numerically studied. This CFD work validates a recently published study using pure oxygen bubbles and expands it to pure bubbles of other compounds (different Schmidt numbers) for different Reynolds numbers. The simulations were performed with VOF + PLIC to track the gas-liquid interface. Flow and mass fields were solved simultaneously based on the "species transport" model and imposing a constant concentration at the interface. The results confirmed that the solute around the bubble remains in a thin layer along the nose and film regions. At the bubble rear, it accumulates in the wake due to the closed liquid recirculation characteristic of laminar flow. Local and global mass transfer coefficients were also determined for these characteristic hydro-dynamic regions. The data showed a higher impact of the nose and film on the overall mass transfer, so a general correlation between Sherwood, Reynolds and Schmidt numbers was derived for each of these regions. The developed correlations offer a good prediction of the mass transfer (deviations around 10-20%).
机译:传质是一种重要现象,可以通过流体动力学高度杠杆。 SLUP流量经常与传输现象的增强相关,因此,在数值上研究了从单个泰勒气泡到流动液体的质量转移。该CFD工作验证了使用纯氧气泡的最近发表的研究,并将其扩展到其他化合物(不同施密特数)的纯吸气泡,用于不同的雷诺数。用VOF + PLIC进行模拟以跟踪气液界面。基于“物种传输”模型同时进行流动和质量场,并在界面处施加恒定浓度。结果证实,气泡周围的溶质沿着鼻子和薄膜区域保留在薄层中。在气泡后部,它由于层流的闭合液体再循环特性而在瓶中累积。还针对这些特征水动力区域确定局部和全球传质系数。该数据显示出鼻子和薄膜对整体传质的较高影响,因此为这些区域中的每一个衍生夏伍德,雷诺和施密特数之间的一般相关性。发达的相关性提供了对传质预测的良好预测(偏差约为10-20%)。

著录项

  • 来源
    《International Communications in Heat and Mass Transfer》 |2021年第1期|104998.1-104998.9|共9页
  • 作者单位

    Centra de Estudos de Fenomenos de Transporte Departamento de Engenharia Quimica Faculdade de Engenharia da Universidade do Porto Rua Dr. Roberto Frias 4200-465 Porto Portugal;

    Centra de Estudos de Fenomenos de Transporte Departamento de Engenharia Quimica Faculdade de Engenharia da Universidade do Porto Rua Dr. Roberto Frias 4200-465 Porto Portugal;

    Centra de Estudos de Fenomenos de Transporte Departamento de Engenharia Quimica Faculdade de Engenharia da Universidade do Porto Rua Dr. Roberto Frias 4200-465 Porto Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Slug flow; Mass transfer; VOF; CFD;

    机译:弹流;传质;vof;差价合约;
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