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首页> 外文期刊>International Journal of Heat and Mass Transfer >Non-dimensional numerical study of droplet impacting on heterogeneous hydrophilicity/hydrophobicity surface
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Non-dimensional numerical study of droplet impacting on heterogeneous hydrophilicity/hydrophobicity surface

机译:液滴对非均质亲水性/疏水性表面影响的无量纲研究

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摘要

Heterogeneous hydrophilicity/hydrophobicity surface involves many applications such as dropwise condensation, but droplet dynamics on such surface is not well understood. Here, droplet impacting on heterogeneous surface was described by non-dimensional conservation equations. The volume of fluid (VOF) method tracked the gas-liquid interface. A set of parameters such as impacting velocity, drop size etc. were combined to form three key non-dimensional parameters of We, Oh and β_i (size ratio of hydro-philic dot to drop). Numerical simulations agreed with impacting outcomes on uniformly hydrophilic or hydrophobic surface in references. For drop dynamics on heterogeneous surface, the regime maps containing complete-drop, single-drop-pinching-off and multi-drops-pinching-off were demonstrated over a wide range of We = 1-100, Oh = 0.001-1 and β_i = 0.5-10. The increased β_i enlarges the complete drop regime. The single-drop-pinching-off mode involves combined wall adhesion and surface tension induced short wave mechanism, while the multi-drops-pinching-off mode is caused by the propagation and interference of capillary waves from both ends of an elongated liquid column. The superposition principle was found for the first time: drop patterns include an adhesion part on the wall, similar to that on a hydrophilic surface, plus a rebounding part, similar to that on a super-hydrophobic surface. Spreading diameters are increased by β_i at smaller We and moderate or larger β_i, but they are not influenced by hydrophilic dot sizes at large We, under which inertia force thoroughly suppress effects of surface tension and wall adhesion. The present findings of this paper are helpful to design hydrophilic/ hydrophobic surface and ensure droplet completeness during the impacting process.
机译:非均质的亲水性/疏水性表面涉及许多应用,例如逐滴缩合,但是在这种表面上的液滴动力学尚不十分清楚。在此,通过无量纲守恒方程描述了液滴在异质表面上的撞击。流体体积(VOF)方法跟踪了气液界面。一组诸如冲击速度,液滴大小等参数组合在一起,形成了We,Oh和β_i(亲水点与液滴的大小比)这三个关键的无量纲参数。数值模拟与参考文献中均匀亲水或疏水表面的影响有关。对于非均质表面上的液滴动力学,在We = 1-100,Oh = 0.001-1和β_i的宽范围内,证明了包含完全液滴,单液滴挤压和多液滴挤压的状态图= 0.5-10。增加的β_i扩大了完整的下降机制。单滴-夹断模式涉及壁粘附和表面张力引起的短波机制的组合,而多滴-夹断模式是由细长液柱两端的毛细管波的传播和干扰引起的。首次发现了叠加原理:水滴图案包括在壁上的粘附部分(类似于在亲水性表面上的粘附部分)以及在反弹部分(类似于在超疏水性表面上的粘附部分)。较小的We和中等或较大的β_i时,扩展直径会增加β_i,但在较大的We时,它们不受亲水点大小的影响,在这种情况下,惯性力完全抑制了表面张力和壁附着力的影响。本文的当前发现有助于设计亲水/疏水表面并确保在冲击过程中液滴的完整性。

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  • 来源
  • 作者单位

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer for Low Grade Energy Utilization, North China Electric Power University, Beijing 102206, PR China;

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer for Low Grade Energy Utilization, North China Electric Power University, Beijing 102206, PR China;

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer for Low Grade Energy Utilization, North China Electric Power University, Beijing 102206, PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Drop dynamics; Heterogeneous surface; Interface; Hydrophilic dot; Drop breakup;

    机译:跌落动力学;异质表面;接口;亲水点跌落分手;

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