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首页> 外文期刊>The Journal of Computational Multiphase Flows >Simulations of coalescence of two colliding liquid drops using lattice Boltzmann method
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Simulations of coalescence of two colliding liquid drops using lattice Boltzmann method

机译:用格子Boltzmann方法模拟两种碰撞液滴的聚结

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>In this paper, two-dimensional numerical simulations of the head-on and off-center binary collision of liquid drops are carried out using lattice Boltzmann method. The coalescence process of drops colliding is freely captured, regardless of tracking equations and drops model. Special attention is paid to investigate the effect of the Weber number, impact velocity, drop size ratio on the coalescence process. The research results demonstrate that numerical results of lattice Boltzmann method are in agreement with qualitatively experimental data in the same Weber number. It is also noted that the first oscillation period is invariably shorter than the second period, regardless of the Weber number. It is further found that variation of the first period of oscillation in off-center collision of two equal-size drops as function of Weber number are higher than the variation of the first period of oscillation in head-on collision of two equal-size drops in the same Weber number.
机译: >本文,使用晶格Boltzmann方法进行液滴头部和偏离中心二进制碰撞的二维数值模拟。无论跟踪方程和液滴模型如何,都自由地捕获滴落碰撞的聚结过程。特别注意探讨韦伯号,冲击速度,跌落尺寸比对聚结过程的影响。研究结果表明,格子Boltzmann方法的数值结果与同一韦伯号的定性实验数据一致。还注意到,无论韦伯号如何,第一振荡时期都比第二个时期得不到短。进一步发现,作为韦伯号的功能的两个相等尺寸滴剂的偏离中心碰撞中的第一周期的变化高于两个相等尺寸滴眼液的头部碰撞中的第一周期的第一周期的变化在同一韦伯号码中。

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