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A mass-conserving multiphase lattice Boltzmann model for simulation of multiphase flows

机译:一种用于模拟多相流模拟的大规模保护多相晶格玻璃模型

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In this study, a mass-conserving multiphase lattice Boltzmann (LB) model is proposed for simulating the multiphase flows. The proposed model developed in the present study is to improve the model of Shao et al. ["Free-energy-based lattice Boltzmann model for simulation of multiphase flows with density contrast," Phys. Rev. E 89, 033309 (2014)] by introducing a mass correction term in the lattice Boltzmann model for the interface. The model of Shao et al. [(the improved Zheng-Shu-Chew (Z-S-C model)] correctly considers the effect of the local density variation in momentum equation and has an obvious improvement over the Zheng-Shu-Chew (Z-S-C) model ["A lattice Boltzmann model for multiphase flows with large density ratio," J. Comput. Phys. 218(1), 353-371 (2006)] in terms of solution accuracy. However, due to the physical diffusion and numerical dissipation, the total mass of each fluid phase cannot be conserved correctly. To solve this problem, a mass correction term, which is similar to the one proposed byWang et al. ["A mass-conserved diffuse interface method and its application for incompressible multiphase flows with large density ratio," J. Comput. Phys. 290, 336-351 (2015)], is introduced into the lattice Boltzmann equation for the interface to compensate the mass losses or offset the mass increase. Meanwhile, to implement the wetting boundary condition and the contact angle, a geometric formulation and a local force are incorporated into the present mass-conserving LB model. The proposed model is validated by verifying the Laplace law, simulating both one and two aligned droplets splashing onto a liquid film, droplets standing on an ideal wall, droplets with different wettability splashing onto smooth wax, and bubbles rising under buoyancy. Numerical results show that the proposed model can correctly simulate multiphase flows. It was found that the mass is well-conserved in all cases considered by the model developed in the present study. The developed model
机译:在该研究中,提出了一种用于模拟多相流的质量保守的多相晶格Boltzmann(LB)模型。本研究开发的拟议模型是改善Shao等人的模型。 [“基于自由能源的晶格Boltzmann模型,用于模拟密度对比度的多相流动”“。 Rev.E 89,033309(2014)通过在界面的晶格Boltzmann模型中引入大规模校正项。 Shao等人的模型。 [(改进的郑州咀嚼(ZSC模型)]正确地考虑了局部密度变化在动量方程中的效果,对郑州咀嚼(ZSC)模型具有明显的改进[“多相的格子Boltzmann模型以大密度比例流动,“j.copp。物理。在解决方案准确性方面,218(1),353-371(2006)]。然而,由于物理扩散和数值耗散,每个流体相的总质量不能正确保存。为了解决这个问题,一个质量校正项,它类似于王等人所提出的。[“具有大密度比例的压缩漫射界面方法及其对不可压缩的多相流的应用”,J.Copp 。700,336-351(2015)],被引入界面的晶格Boltzmann方程,以补偿质量损失或偏移质量增加。同时,实现润湿边界条件和接触角,几何配方和当地力量含有进入目前的大众保守LB模型。通过验证拉普拉斯定律来验证所提出的模型,模拟溅到液体膜上的一个和两个对齐的液滴,液滴站在理想的墙壁上,液滴具有不同润湿性的不同湿度溅到光滑的蜡上,并在浮力下升高。数值结果表明,所提出的模型可以正确地模拟多相流。发现质量在本研究中开发的模型考虑的所有病例中得到了很好的保守。开发的模型

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  • 来源
    《Physics of fluids》 |2018年第1期|共13页
  • 作者单位

    Shantou Univ Coll Engn 243 Daxue Rd Shantou 515063 Guangdong Peoples R China;

    Shantou Univ Coll Engn 243 Daxue Rd Shantou 515063 Guangdong Peoples R China;

    Shantou Univ Coll Engn 243 Daxue Rd Shantou 515063 Guangdong Peoples R China;

    Shantou Univ Coll Engn 243 Daxue Rd Shantou 515063 Guangdong Peoples R China;

    Shantou Univ Coll Engn 243 Daxue Rd Shantou 515063 Guangdong Peoples R China;

    Shantou Univ Coll Engn 243 Daxue Rd Shantou 515063 Guangdong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
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