Marangoni effect and spreading of an insoluble surfactant over a deep layer of a power-law fluid

被引:0
|
作者
Banos, R. [1 ,2 ]
Mendez, F. [2 ]
Arcos, J. [1 ]
Bautista, O. [1 ]
机构
[1] Inst Politecn Nacl, ESIME Azcapotzalco, Ave Granjas 682, Ciudad De Mexico 02250, Cdmx, Mexico
[2] Univ Nacl Autonoma Mexico, Fac Ingn, Dept Termofluidos, Ciudad Univ, Ciudad De Mexico 04510, Cdmx, Mexico
关键词
Surfactant spreading; Power-law fluid; Oscillatory Marangoni effect; CONVECTION; FILM;
D O I
10.1016/j.euromechflu.2024.06.009
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this work, a numerical study is conducted to analyze the spreading dynamics of an insoluble and non- diffusive surfactant through the Marangoni convection mechanism on the surface of a deep layer of a shear thickening fluid, whose behavior follows the power-law fluid rheological model. The momentum and convective-diffusion equations are non-dimensionalized and solved numerically by an implicit finite-difference scheme. The dynamic of the physical problem depends on dimensionless parameters that control the decay of the temporal variations in the surfactant concentration: the Reynolds number Re , the power index n , and " is the ratio between the wave amplitude and the mean surfactant concentration. The main findings show that opposite to shear-thinning fluids, shear-thickening fluids require less time to reach the uniform condition in the surfactant distribution due to a lower response to the inertia of the fluid; this time is even less than that needed for Newtonian fluids. Besides, both types, pseudoplastic and dilatant fluids, showed a similar response when varying the Reynolds number; as this parameter increases, the temporal decay of the surfactant concentration on the fluid surface increases while the distance over which the fluid motion is diffused towards the bottom of the fluid layer decreases.
引用
收藏
页码:138 / 147
页数:10
相关论文
共 50 条
  • [21] Flow of a power-law fluid over a rotating disk revisited
    Andersson, HI
    de Korte, E
    Meland, R
    FLUID DYNAMICS RESEARCH, 2001, 28 (02) : 75 - 88
  • [22] MAGNETOHYDRODYNAMIC FLOW OF A POWER-LAW FLUID OVER A STRETCHING SHEET
    ANDERSSON, HI
    BECH, KH
    DANDAPAT, BS
    INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 1992, 27 (06) : 929 - 936
  • [23] Impact of magnetic induction on the flow of self-rewetting power-law fluid over a disk surface: Onset of Marangoni convection
    Chaurasiya, V. K.
    Kumar, A.
    Tripathi, R.
    Singh, R.
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2024,
  • [24] THE VECTOR POWER-LAW CALCULUS WITH APPLICATIONS IN POWER-LAW FLUID FLOW
    Yang, Xiao-Jun
    THERMAL SCIENCE, 2020, 24 (06): : 4289 - 4302
  • [25] Boundary-layer flow of the power-law fluid over a moving wedge: a linear stability analysis
    Kudenatti, Ramesh B.
    Noor-E-Misbah
    Bharathi, M. C.
    ENGINEERING WITH COMPUTERS, 2021, 37 (03) : 1807 - 1820
  • [26] Boundary-layer flow of the power-law fluid over a moving wedge: a linear stability analysis
    Ramesh B. Kudenatti
    M. C. Noor-E-Misbah
    Engineering with Computers, 2021, 37 : 1807 - 1820
  • [27] On dynamic excitation of Marangoni instability in a liquid layer with insoluble surfactant on the deformable surface
    Mikishev, A. B.
    Nepomnyashchy, A. A.
    EUROPEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 2015, 224 (02): : 229 - 239
  • [28] Marangoni instability of a liquid layer with insoluble surfactant under heat flux modulation
    Alexander B. Mikishev
    Alexander A. Nepomnyashchy
    The European Physical Journal Special Topics, 2013, 219 : 81 - 88
  • [29] Parametric Excitation of Marangoni Instability in a Heated Thin Layer Covered by Insoluble Surfactant
    Alexander B. Mikishev
    Alexander A. Nepomnyashchy
    Microgravity Science and Technology, 2018, 30 : 173 - 181
  • [30] Parametric Excitation of Marangoni Instability in a Heated Thin Layer Covered by Insoluble Surfactant
    Mikishev, Alexander B.
    Nepomnyashchy, Alexander A.
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2018, 30 (03) : 173 - 181