A three-dimensional model of droplet impact and solidification

被引:292
|
作者
Pasandideh-Fard, M [1 ]
Chandra, S [1 ]
Mostaghimi, J [1 ]
机构
[1] Univ Toronto, Ctr Adv Coating Technol, Dept Mech & Ind Engn, Toronto, ON M5S 3G8, Canada
基金
加拿大创新基金会; 加拿大自然科学与工程研究理事会;
关键词
D O I
10.1016/S0017-9310(01)00336-2
中图分类号
O414.1 [热力学];
学科分类号
摘要
A three-dimensional model has been developed to simulate the fluid dynamics, heat transfer and phase-change that occur when a molten metal droplet falls onto a flat substrate. The model is an extension of one developed by Bussmann et al. [Phys. Fluids 11 (1999) 1406] and combines a fixed-grid control volume discretization of the fluid flow and energy equations with a volume-tracking algorithm to track the droplet free surface, and an improved fixed velocity method to track the solidification front. Surface tension is modeled as a volume force acting on fluid near the free surface. Contact angles are applied as a boundary condition at liquid-solid contact lines. The energy equations in both the liquid and solid portions of the droplet are solved using the Enthalpy method. Heat transfer within the substrate is by conduction alone. Thermal contact resistance at the droplet-substrate interface is included in the model. We studied the deposition of tin droplets on a stainless steel surface using both experiments and numerical simulations. The results of two different scenarios are presented: the normal impact of a 2.7 mm tin droplet at 1 m/s, and of the oblique impact of a 2.2 mm tin droplet at 2.35 m/s onto a surface inclined at 45degrees to the horizontal. Images obtained from numerical model were compared with experimental photographs and found to agree well. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:2229 / 2242
页数:14
相关论文
共 50 条
  • [1] A modified phase-field three-dimensional model for droplet impact with solidification
    Shen, Mingguang
    Li, Ben Q.
    Yang, Qingzhen
    Bai, Yu
    Wang, Yu
    Zhu, Shaochong
    Zhao, Bin
    Li, Tianqing
    Hu, Yongbao
    [J]. INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2019, 116 : 51 - 66
  • [2] A Three-Dimensional Model of Droplet Impinging, Solidification and Suspension on the Substrate
    Zhu Sheng
    Yin Fengliang
    Liu Jian
    Liang Yuanyuan
    [J]. SUSTAINABLE CONSTRUCTION MATERIALS AND COMPUTER ENGINEERING, 2012, 346 : 222 - 227
  • [3] On a three-dimensional volume tracking model of droplet impact
    Bussmann, M
    Mostaghimi, J
    Chandra, S
    [J]. PHYSICS OF FLUIDS, 1999, 11 (06) : 1406 - 1417
  • [4] Three-dimensional droplet motion model
    [J]. Bo, H. (bohl@mail.tsinghua.edu.cn), 2013, Tsinghua University (53):
  • [5] Three-dimensional modelling of solder droplet impact onto a groove
    Tian, D. W.
    Tian, Y. H.
    Wang, C. Q.
    Hang, C. J.
    [J]. JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2008, 41 (24)
  • [6] Three-dimensional dendritic needle network model for alloy solidification
    Tourret, D.
    Karma, A.
    [J]. ACTA MATERIALIA, 2016, 120 : 240 - 254
  • [7] Three-dimensional mathematical model of the solidification of large steel ingots
    Grozdanic, V
    [J]. METALURGIJA, 2006, 45 (02): : 103 - 107
  • [8] Fairness in the three-dimensional model for citation impact
    Marek Gagolewski
    Barbara Żogała-Siudem
    Grzegorz Siudem
    Anna Cena
    [J]. Scientometrics, 2022, 127 : 6055 - 6059
  • [9] Fairness in the three-dimensional model for citation impact
    Gagolewski, Marek
    Zogala-Siudem, Barbara
    Siudem, Grzegorz
    Cena, Anna
    [J]. SCIENTOMETRICS, 2022, 127 (10) : 6055 - 6059
  • [10] Study on numerical algorithm of droplet motion model in three-dimensional space
    [J]. Zhang, H., 1600, Atomic Energy Press (48):