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A thermodynamically consistent phase-field model for two-phase flows with thermocapillary effects

机译:具有热毛细管效应的两相流的热力学一致相场模型

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摘要

In this paper, we develop a phase-field model for binary incompressible (quasi-incompressible) fluid with thermocapillary effects, which allows for the different properties (densities, viscosities and heat conductivities) of each component while maintaining thermodynamic consistency. The governing equations of the model including the Navier–Stokes equations with additional stress term, Cahn–Hilliard equations and energy balance equation are derived within a thermodynamic framework based on entropy generation, which guarantees thermodynamic consistency. A sharp-interface limit analysis is carried out to show that the interfacial conditions of the classical sharp-interface models can be recovered from our phase-field model. Moreover, some numerical examples including thermocapillary convections in a two-layer fluid system and thermocapillary migration of a drop are computed using a continuous finite element method. The results are compared with the corresponding analytical solutions and the existing numerical results as validations for our model.
机译:在本文中,我们开发了具有热毛细作用的二元不可压缩(准不可压缩)流体的相场模型,该模型在保持热力学一致性的同时,允许每种组分具有不同的特性(密度,粘度和导热率)。该模型的控制方程包括带有附加应力项的Navier–Stokes方程,Cahn–Hilliard方程和能量平衡方程,它们是在基于熵生成的热力学框架内得出的,从而保证了热力学的一致性。进行了尖锐界面极限分析,以表明可以从我们的相场模型中恢复经典尖锐界面模型的界面条件。此外,使用连续有限元方法计算了一些数值示例,包括两层流体系统中的热毛细管对流和液滴的热毛细管迁移。将结果与相应的分析解决方案以及现有的数值结果进行比较,以验证我们的模型。

著录项

  • 作者

    Guo Z.; Lin Ping;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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