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DNS using CLSVOF method of single micro-bubble breakup and dynamics in flow focusing

机译:DNS使用CLSVOF方法的单一微泡突破和流动聚焦动力学方法

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摘要

Numerical simulations are performed to investigate the breakup of air bubble in flow focusing configuration; the CLSVOF (coupled level set with volume of fluid) method is employed to track the interface, which allows a better identification of the liquid-gas interface via a function called level set. The CFD simulations showed that the velocity ratio, the interfacial tension, the outer channel diameter, the continuous phase viscosity, the orifice width and length play an important role in the determination of the air bubble's size and shape. However, at low capillary number, increasing the flow velocity ratio gives a smaller bubble size in shorter time, while the increase in interfacial tension leads to a bigger bubble. Moreover, the carrier fluid is found to slightly affect the bubbling mechanism, while the smallest bubbles were obtained with the smallest orifice size. In addition, three breakup regimes are observed in this device: disc-bubble (DB), elongated bubble (EB) and the slug bubble (SB) regime flows. This work also demonstrates that the CLSVOF is an effective method to simulate the bubbles breakup in flow focusing geometry. In addition, a comparison of our computational simulations with available experimental results reveals reasonably good agreement.
机译:进行数值模拟,以研究流动聚焦配置中的气泡破碎;采用CLSVOF(具有流体量的耦合水平)方法来跟踪界面,其允许通过称为水平集的功能更好地识别液体气体接口。 CFD模拟表明,速度比,界面张力,外沟道直径,连续相粘度,孔口宽度和长度在测定气泡尺寸和形状中起着重要作用。然而,在低毛细数量的情况下,增加流速比在较短的时间内给出较小的气泡尺寸,而界面张力的增加导致更大的泡沫。此外,发现载体流体略微影响鼓泡机构,而最小的气泡是以最小的孔尺寸获得的。另外,在该装置中观察到三个分解制度:椎间盘气泡(DB),细长气泡(EB)和SLUG气泡(SB)制度流动。这项工作还表明CLSVOF是模拟流动聚焦几何形状中气泡分解的有效方法。此外,我们使用可用实验结果的计算模拟的比较揭示了合理的协议。

著录项

  • 来源
    《Journal of visualization》 |2021年第3期|519-530|共12页
  • 作者单位

    Research Center in Industrial Technologies CRTI P.O. Box 64 Cheraga Algiers Algeria ENERGARID Laboratory Mechanical Engineering Department University Tahri Mohamed Bechar Bp. 417 Route de Kenadsa 08000 Bechar Algeria;

    Research Center in Industrial Technologies CRTI P.O. Box 64 Cheraga Algiers Algeria;

    Research Center in Industrial Technologies CRTI P.O. Box 64 Cheraga Algiers Algeria Laboratoire D'etudes Et Recherche en Technologies Industrielles LERTI Universite de Saad Dahleb Blida 1 Blida Algerie;

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

    Bubbling; Multiphase flow; CLSVOF; CFD and flow focusing;

    机译:冒泡;多相流动;CLSVOF;CFD和流量聚焦;
  • 入库时间 2022-08-19 01:56:56

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