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Droplets coalescence and mixing with identical and distinct surface tension on a wettability gradient surface

机译:液滴在润湿性梯度表面上聚结并以相同且不同的表面张力混合

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摘要

The influence of identical and distinct surface tensions on the coalescence and mixing of droplets after a direct collision on a wettability gradient surface (made from a self-assembled monolayer, SAM technique) was investigated. The results indicate that their mixing is driven sequentially by interior convection and diffusion; the convection endures less than 100 ms but dominates more than 60 % of the mixing. If the stationary droplet has a large surface tension (73.28 mN × m~(-1)), whether the moving droplet has a large surface tension (73.28 mN × m~(-1)) or a small surface tension (38.63 mN × m~(-1)), the mushroom-shaped mixing pattern is generated within the coalesced droplet that enhances the convective mixing and also significantly enlarges the interface for mass diffusion. The mixing index of these two cases was greater than 0.8 at 120 s after the collision. For the cases in which the stationary droplet with a small surface tension collided by the moving droplet with a large surface tension, a mixing pattern with a round-head shape developed, which was insufficient to benefit the mixing. When the stationary and moving droplets both had small surface tension, the moving droplet was unable to merge with stationary droplet and had poor mixing quality due to the small surface Gibbs energy of both stationary and moving droplets. For the collision of droplets of identical surface tension, the surface tension affects the coalescence behavior; for the collision of droplets with distinct surface tension, the coalescence behavior and mixing quality depend on the colliding arrangement of stationary and moving droplets.
机译:研究了相同和不同的表面张力对在可湿性梯度表面(由自组装单层,SAM技术制成)直接碰撞后液滴的聚结和混合的影响。结果表明,它们的混合是由内部对流和扩散顺序驱动的。对流的持续时间少于100毫秒,但占混合的60%以上。如果静止液滴的表面张力较大(73.28 mN×m〜(-1)),则运动液滴的表面张力较大(73.28 mN×m〜(-1))还是表面张力较小(38.63 mN× m〜(-1)),在聚结的液滴内产生蘑菇状的混合模式,这增强了对流混合并显着扩大了质量扩散的界面。碰撞后120 s,这两种情况的混合指数大于0.8。对于表面张力较小的静止液滴与表面张力较大的运动液滴碰撞的情况,形成了圆头形状的混合图案,不足以使混合受益。当静止液滴和运动液滴的表面张力均较小时,由于静止液滴和运动液滴的表面吉布斯能量均较小,因此运动液滴无法与静止液滴融合,并且混合质量较差。对于具有相同表面张力的液滴的碰撞,表面张力会影响聚结行为。对于具有不同表面张力的液滴碰撞,聚结行为和混合质量取决于静止液滴和运动液滴的碰撞布置。

著录项

  • 来源
    《Microfluidics and nanofluidics》 |2013年第5期|785-795|共11页
  • 作者单位

    Institute of Applied Mechanics, National Taiwan University, 1 Sec. 4 Roosevelt Rd., Taipei 106, Taiwan;

    Department of Mechanical Engineering, National Taiwan University, 1 Sec. 4 Roosevelt Rd., Taipei 106, Taiwan;

    Institute of Applied Mechanics, National Taiwan University, 1 Sec. 4 Roosevelt Rd., Taipei 106, Taiwan;

    Department of Mechanical Engineering, National Taiwan University, 1 Sec. 4 Roosevelt Rd., Taipei 106, Taiwan;

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

    surface tension; droplets coalescence; microfluidic mixing; μ-PIV; μ-LIF;

    机译:表面张力;液滴聚结;微流体混合;μ-PIV;L-LIF;
  • 入库时间 2022-08-17 13:45:14

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