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Numerical simulation of the collision of two microdroplets with a pseudopotential multiple-relaxation-time lattice Boltzmann model

机译:伪电位多重弛豫时间格子Boltzmann模型碰撞两个微滴的数值模拟

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摘要

Collisions of two equally sized liquid micro-droplets in gaseous phase are numerically studied by the lattice Boltzmann method (LBM). The multiphase formulation adopted is a pseudopotential model with improved treatment of the equation of state and force incorporation which is then coupled with the multiple-relaxation-time scheme. That allows a detailed investigation into micro-droplet collisions characterized by high-density ratios as well as by relevant inertial effects. Simulations related to a wide range of flow parameters (e.g. Weber and Reynolds numbers) are reported, in order to embrace all the colli-sional regimes presented in previous experimental studies. From surface tension-driven coalescence (both inertial and viscous coalescence have been examined) to catastrophic break-up with the formation of children microdroplets, the simulations demonstrate that the LBM correctly reproduces the collision dynamics and the final outcomes in almost all the regimes. Different break-up mechanisms like end-pinching and capillary wave-induced break-up have been observed. Finally, the initial stages of the inertia-dominated head-on collision process have been studied, showing once more the effectiveness and reliability of this multiphase LBM implementation.
机译:通过格子Boltzmann方法(LBM)数值研究了气相中两个大小相等的液体微滴的碰撞。所采用的多相公式是伪势模型,其中对状态方程和力合并方程进行了改进处理,然后与多重松弛时间方案耦合。这允许对以高密度比以及相关惯性效应为特征的微滴碰撞进行详细研究。为了涵盖先前实验研究中提出的所有碰撞机制,已报道了与各种流动参数(例如韦伯和雷诺数)有关的模拟结果。从表面张力驱动的聚结(已经研究了惯性和粘性聚结)到形成子微滴的灾难性破裂,模拟表明LBM可以在几乎所有情况下正确地再现碰撞动力学和最终结果。观察到了不同的破裂机制,如末端捏和毛细管波诱导的破裂。最后,对惯性主导的正面碰撞过程的初始阶段进行了研究,再次显示了这种多阶段LBM实施的有效性和可靠性。

著录项

  • 来源
    《Microfluidics and nanofluidics》 |2014年第2期|329-346|共18页
  • 作者单位

    Institute for Applied Mechanics,Technical University,Clausthal Adolph-Roemer Strasse 2a,38678 Clausthal-Zellerfeld,Germany;

    Institute for Applied Mechanics,Technical University,Clausthal Adolph-Roemer Strasse 2a,38678 Clausthal-Zellerfeld,Germany;

    Energy Technology Research Group,Faculty of Engineering and the Environment,Southampton University,Southampton SO 17 1BJ,UK;

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

    Microdroplet collision; Microflows; Lattice Boltzmann;

    机译:微滴碰撞;微流;莱迪丝·玻尔兹曼;

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