An analytical study on unsteady motion of vertically falling spherical particles in quiescent power-law shear-thinning fluids

被引:21
|
作者
Malvandi, A. [1 ]
Moshizi, S. A. [1 ]
Ganji, D. D. [2 ]
机构
[1] Amirkabir Univ Technol, Dept Mech Engn, Tehran Polytech, Tehran, Iran
[2] Babol Noshirvani Univ Technol, Dept Mech Engn, Babol Sar, Iran
关键词
Analytical solution; Non-Newtonian fluid; Spherical particle; Variational iteration method; Homotopy analysis method; VARIATIONAL ITERATION METHOD; HOMOTOPY PERTURBATION METHOD; ACCELERATING MOTION; ENTROPY GENERATION; HYDRODYNAMIC FORCE; SOLID PARTICLE; MODEL; FLOW; EQUATION; SEDIMENTATION;
D O I
10.1016/j.molliq.2013.12.042
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Unsteady motion of a rigid spherical particle in a quiescent shear-thinning power-law fluid was investigated analytically. The accurate series solution was found by coupling the homotopy-perturbation method (HPM) and the variational iteration method (VIM). The results were compared with those obtained from VIM and the established finite difference scheme. It was shown that both methods (VIM and HPM-VIM) gave accurate results; however, the amount of calculations required for HPM-VIM was significantly reduced. In addition to improved efficiency, it was revealed that HPM-VIM leads to completely reliable and precise results. The terminal settling velocity-that is the velocity at which the net forces on a falling particle eliminate-for three different spherical particles (made of plastic, glass and steel) and three flow behavior index n, in two sets of power-law non-Newtonian fluids was investigated, based on the series solution. Analytical results obtained indicated that the time of reaching the terminal velocity in a falling procedure is significantly declined with growing the particle size. Further, with approaching flow behavior to Newtonian behavior from shear-thinning properties of flow (n -> 1), the transient time to achieving the terminal settling velocity is decreased. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:166 / 173
页数:8
相关论文
共 50 条
  • [21] A numerical study of the motion of a spherical drop rising in shear-thinning fluid systems
    Ohta, M
    Iwasaki, E
    Obata, E
    Yoshida, Y
    [J]. JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2003, 116 (01) : 95 - 111
  • [22] Numerical study of the interaction between cylindrical particles and shear-thinning fluids in a linear shear flow
    Ji, Jingbo
    Zhang, Hao
    An, Xizhong
    Yang, Dongmin
    [J]. PHYSICS OF FLUIDS, 2024, 36 (08)
  • [23] Numerical study on dynamics of single bubble rising in shear-thinning power-law fluid in different gravity environment
    Pang, Mingjun
    Lu, Minjie
    [J]. VACUUM, 2018, 153 : 101 - 111
  • [24] The adhesive or slippery flat plate viscoplastic boundary layer for a shear-thinning power-law viscosity
    Piau, JM
    Debiane, K
    [J]. JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2004, 117 (2-3) : 97 - 107
  • [25] Transient solution for a plane-strain fracture driven by a shear-thinning, power-law fluid
    Garagash, D. I.
    [J]. INTERNATIONAL JOURNAL FOR NUMERICAL AND ANALYTICAL METHODS IN GEOMECHANICS, 2006, 30 (14) : 1439 - 1475
  • [26] Free-surface jet flow of a shear-thinning power-law fluid near the channel exit
    Khayat, Roger E.
    [J]. JOURNAL OF FLUID MECHANICS, 2014, 748 : 580 - 617
  • [27] Experimental study on the wall factor for spherical particles settling in parallel plates filled with power-law fluids
    Song, Xianzhi
    Zhu, Zhaopeng
    Xu, Zhengming
    Li, Gensheng
    Faustino, Matsimbe Atanasio
    Chen, Changchang
    Jiang, Tianwen
    Xie, Xin
    [J]. JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2019, 179 : 941 - 947
  • [28] Settling behavior of non-spherical particles in power-law fluids: Experimental study and model development
    Xu, Zhengming
    Song, Xianzhi
    Li, Gensheng
    Pang, Zhaoyu
    Zhu, Zhaopeng
    [J]. PARTICUOLOGY, 2019, 46 : 30 - 39
  • [29] Correlation of Polysiloxane Molecular Structure to Shear-Thinning Power-Law Exponent Using Elastohydrodynamic Film Thickness Measurements
    Zolper, Thomas J.
    Shiller, Paul
    Jungk, Manfred
    Marks, Tobin J.
    Chung, Yip-Wah
    Greco, Aaron
    Doll, Gary
    LotfizadehDehkordi, Babak
    Wang, Qian
    [J]. JOURNAL OF TRIBOLOGY-TRANSACTIONS OF THE ASME, 2015, 137 (03):
  • [30] An analytical model for the prediction of power consumption for shear-thinning fluids with helical ribbon and helical screw ribbon impellers
    Delaplace, G
    Guerin, R
    Leuliet, JC
    Chhabra, RP
    [J]. CHEMICAL ENGINEERING SCIENCE, 2006, 61 (10) : 3250 - 3259