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首页> 外文期刊>International Journal of Multiphase Flow >Modeling of the dynamic wetting behavior in a capillary tube considering the macroscopic–microscopic contact angle relation and generalized Navier boundary condition
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Modeling of the dynamic wetting behavior in a capillary tube considering the macroscopic–microscopic contact angle relation and generalized Navier boundary condition

机译:考虑宏观-微观接触角关系和广义Navier边界条件的毛细管动态润湿行为建模

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摘要

In this study, dynamic wetting phenomena in a capillary tube were studied by using numerical simulations based on the front-tracking method employing the generalized Navier boundary condition (GNBC) and by experimental measurements. For the GNBC, based on molecular dynamics simulations, the microscopic dynamic contact angle is estimated from the grid-scale contact angle using Cox’s macroscopic–microscopic relation. The experimentally measured correlation between the apparent dynamic contact angle and the moving velocity of the contact line is well reproduced by the present simulation technique considering Cox’s macroscopic–microscopic relation. Thus, we found that the dynamics of wetting are well described by combining molecular-scale behavior and macroscopic–microscopic relations.
机译:在这项研究中,通过使用基于广义Navier边界条件(GNBC)的前跟踪方法的数值模拟和实验测量,研究了毛细管中的动态润湿现象。对于GNBC,基于分子动力学模拟,微观动态接触角是使用Cox的宏观-微观关系从网格尺度接触角估算的。考虑到考克斯的宏观-微观关系,通过本模拟技术可以很好地再现表观动态接触角与接触线移动速度之间的实验测量相关性。因此,我们发现结合分子尺度行为和宏观-微观关系很好地描述了润湿动力学。

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