Non-Newtonian rheology in inertial suspensions of inelastic rough hard spheres under simple shear flow

被引:11
|
作者
Gomez Gonzalez, Ruben [1 ]
Garzo, Vicente [1 ,2 ]
机构
[1] Univ Extremadura, Dept Fis, E-06006 Badajoz, Spain
[2] Univ Extremadura, Inst Comp Cient Avanzada ICCAEx, E-06006 Badajoz, Spain
关键词
KINETIC-THEORY; DENSE GAS; RELAXATION; PARTICLES; DYNAMICS; MOTION; WASTE; MODEL;
D O I
10.1063/5.0015241
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Non-Newtonian transport properties of an inertial suspension of inelastic rough hard spheres under simple shear flow are determined by the Boltzmann kinetic equation. The influence of the interstitial gas on rough hard spheres is modeled via a Fokker-Planck generalized equation for rotating spheres accounting for the coupling of both the translational and rotational degrees of freedom of grains with the background viscous gas. The generalized Fokker-Planck term is the sum of two ordinary Fokker-Planck differential operators in linear v and angular omega velocity space. As usual, each Fokker-Planck operator is constituted by a drag force term (proportional to v and/or omega) plus a stochastic Langevin term defined in terms of the background temperature T-ex. The Boltzmann equation is solved by two different but complementary approaches: (i) by means of Grad's moment method and (ii) by using a Bhatnagar-Gross-Krook (BGK)-type kinetic model adapted to inelastic rough hard spheres. As in the case of smooth inelastic hard spheres, our results show that both the temperature and the non-Newtonian viscosity increase drastically with an increase in the shear rate (discontinuous shear thickening effect) while the fourth-degree velocity moments also exhibit an S-shape. In particular, while high levels of roughness may slightly attenuate the jump of the viscosity in comparison to the smooth case, the opposite happens for the rotational temperature. As an application of these results, a linear stability analysis of the steady simple shear flow solution is also carried out showing that there are regions of the parameter space where the steady solution becomes linearly unstable. The present work extends previous theoretical results (H. Hayakawa and S. Takada, "Kinetic theory of discontinuous rheological phase transition for a dilute inertial suspension," Prog. Theor. Exp. Phys. 2019, 083J01 and R. G. Gonzalez and V. Garzo, "Simple shear flow in granular suspensions: Inelastic Maxwell models and BGK-type kinetic model," J. Stat. Mech. 2019, 013206) to rough spheres.
引用
收藏
页数:20
相关论文
共 50 条
  • [41] TURBULENT-FLOW OF INELASTIC NON-NEWTONIAN FLUIDS IN PIPES
    GUPTA, SN
    MISHRA, P
    INDIAN JOURNAL OF TECHNOLOGY, 1974, 12 (05): : 181 - 185
  • [42] The inertial dynamics of thin film flow of non-Newtonian fluids
    Roberts, A. J.
    PHYSICS LETTERS A, 2008, 372 (10) : 1607 - 1611
  • [43] DYNAMICS OF SHEAR-FLOW OF A NON-NEWTONIAN FLUID
    MALKUS, DS
    NOHEL, JA
    PLOHR, BJ
    JOURNAL OF COMPUTATIONAL PHYSICS, 1990, 87 (02) : 464 - 487
  • [44] VISCOELASTIC AND NON-NEWTONIAN EFFECTS IN SHEAR-FLOW
    DUFTY, JW
    PHYSICAL REVIEW A, 1984, 30 (01): : 622 - 623
  • [45] SLOW NON-NEWTONIAN FLOW PAST AN ASSEMBLAGE OF RIGID SPHERES
    Chhabra, R. P.
    Raman, J. Raghu
    CHEMICAL ENGINEERING COMMUNICATIONS, 1984, 27 (1-2) : 23 - 46
  • [46] BOUNDARY LAYER FOR A NON-NEWTONIAN FLOW OVER A ROUGH SURFACE
    Gerard-Varet, David
    Wroblewska-Kaminska, Aneta
    SIAM JOURNAL ON MATHEMATICAL ANALYSIS, 2016, 48 (05) : 3123 - 3147
  • [47] Squeeze flow of concentrated suspensions of spheres in Newtonian and shear-thinning fluids
    Collomb, J
    Chaari, F
    Chaouche, M
    JOURNAL OF RHEOLOGY, 2004, 48 (02) : 405 - 416
  • [48] Rheology of non-Brownian suspensions of rough frictional particles under shear reversal: A numerical study
    Peters, Francois
    Ghigliotti, Giovanni
    Gallier, Stany
    Blanc, Frederic
    Lemaire, Elisabeth
    Lobry, Laurent
    JOURNAL OF RHEOLOGY, 2016, 60 (04) : 715 - 732
  • [49] RHEOLOGY OF PHARMACEUTICAL SYSTEMS - OSCILLATORY AND STEADY SHEAR OF NON-NEWTONIAN VISCOELASTIC LIQUIDS
    THURSTON, GB
    MARTIN, A
    JOURNAL OF PHARMACEUTICAL SCIENCES, 1978, 67 (11) : 1499 - 1506
  • [50] NON-NEWTONIAN SHEAR VISCOSITY, NORMAL STRESS COEFFICIENTS AND CORRESPONDING STATES IN RHEOLOGY
    OHR, YG
    EU, BC
    PHYSICS LETTERS A, 1984, 101 (07) : 338 - 342