Couette flow of pentane in clay nanopores: Molecular dynamics simulation

被引:7
|
作者
Pisarev, Vasily V. [1 ,2 ]
Kalinichev, Andrey G. [3 ]
机构
[1] Joint Inst High Temp RAS, 13 bldg 2 Izhorskaya str, Moscow 125412, Russia
[2] HSE Univ, 20 Myasnitskaya Str, Moscow 101000, Russia
[3] Nantes Univ, Lab SUBATECH, UMR 6457 IMT Atlantique, CNRS IN2P3, F-44307 Nantes, France
基金
俄罗斯科学基金会;
关键词
Viscosity; Slip length; Nanopores; Clay; Pentane; Molecular dynamics; IRREVERSIBLE-PROCESSES; ADSORPTION; VISCOSITY; WATER; TRANSPORT; BEHAVIOR; MODELS; SHALES;
D O I
10.1016/j.molliq.2022.120290
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
Shear flow of n-pentane in slit nanopores between clay surfaces is investigated by molecular dynamics simulations. Pyrophyllite and hydrated Na-montmorillonite are considered as representative examples of hydrophobic and hydrophilic clay surfaces, respectively. The viscosity-density relations and slip lengths are calculated for both pentane-clay interfaces for different pore widths. The results show that the viscosity-density dependencies for n-pentane are not changed by the confinement in pores with sizes from 3 to 7 nm, compared to the bulk liquid. At the pyrophyllite-pentane interface the slip length is 0.29 nm on average for all studied densities and pore sizes. However, the slip length is negligible at the montmorillonite-pentane interface, likely due to the microscopic roughness of the interface between pentane and the adsorbed water layer. The orientation analysis shows some preference for pentane mole-cules ordering parallel to the wall surfaces, which is stronger in pyrophyllite pores compared to the montmorillonite, suggesting an influence of the details of fluid-wall interaction on the liquid structure in nanopores.(c) 2022 Published by Elsevier B.V.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] The effect of branching on slip and rheological properties of lubricants in molecular dynamics simulation of Couette shear flow
    Jabbarzadeh, A
    Atkinson, JD
    Tanner, RI
    TRIBOLOGY INTERNATIONAL, 2002, 35 (01) : 35 - 46
  • [22] Molecular dynamics simulation of methane gas flow in nanopores (vol 5, pg 252, 2018)
    Zhang, J.
    PETROLEUM, 2021, 7 (02) : 233 - 233
  • [23] Investigating convective heat transfer coefficient of nanofluid Couette flow in a nanochannel by molecular dynamics simulation
    Assadi, Saeed
    Kalteh, Mohammad
    Motlagh, Mohammad Bagheri
    MOLECULAR SIMULATION, 2022, 48 (08) : 702 - 711
  • [24] Nonlinear Couette flow in a dilute gas: Comparison between theory and molecular-dynamics simulation
    Montanero, JM
    Garzo, V
    PHYSICAL REVIEW E, 1998, 58 (02): : 1836 - 1842
  • [25] Molecular dynamics simulation of Taylor-Couette vortex formation
    Hirshfeld, D
    Rapaport, DC
    PHYSICAL REVIEW LETTERS, 1998, 80 (24) : 5337 - 5340
  • [26] Oil diffusion in shale nanopores: Insight of molecular dynamics simulation
    Zhang, Wei
    Feng, Qihong
    Wang, Sen
    Xing, Xiangdong
    JOURNAL OF MOLECULAR LIQUIDS, 2019, 290
  • [28] Molecular Dynamics Simulation of DNA Capture and Transport in Heated Nanopores
    Belkin, Maxim
    Aksimentiev, Aleksei
    ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (20) : 12599 - 12608
  • [29] Nonequilibrium molecular dynamics simulation of transport of gas mixtures in nanopores
    Xu, LF
    Sedigh, MG
    Sahimi, M
    Tsotsis, TT
    PHYSICAL REVIEW LETTERS, 1998, 80 (16) : 3511 - 3514
  • [30] Nanorheology of molecularly thin films of n-hexadecane in Couette shear flow by molecular dynamics simulation
    Jabbarzadeh, A
    Atkinson, JD
    Tanner, RI
    JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 1998, 77 (1-2) : 53 - 78