Molecular dynamics pre-simulations for nanoscale computational fluid dynamics

被引:37
|
作者
Holland, David M. [1 ]
Lockerby, Duncan A. [1 ]
Borg, Matthew K. [2 ]
Nicholls, William D. [2 ]
Reese, Jason M. [3 ]
机构
[1] Univ Warwick, Sch Engn, Coventry CV4 7AL, W Midlands, England
[2] Univ Strathclyde, Dept Mech & Aerosp Engn, Glasgow G1 1XJ, Lanark, Scotland
[3] Univ Edinburgh, Sch Engn, Edinburgh EH9 3JL, Midlothian, Scotland
基金
英国工程与自然科学研究理事会;
关键词
Nanofluidics; Computational fluid dynamics; Molecular dynamics; Hybrid methods; Carbon nanotubes; BOUNDARY-CONDITIONS; ARBITRARY GEOMETRIES; CARBON NANOTUBES; WATER; FLOW; TRANSPORT;
D O I
10.1007/s10404-014-1443-6
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We present a procedure for using molecular dynamics (MD) simulations to provide essential fluid and interface properties for subsequent use in computational fluid dynamics (CFD) calculations of nanoscale fluid flows. The MD pre-simulations enable us to obtain an equation of state, constitutive relations, and boundary conditions for any given fluid/solid combination, in a form that can be conveniently implemented within an otherwise conventional Navier-Stokes solver. Our results demonstrate that these enhanced CFD simulations are then capable of providing good flow field results in a range of complex geometries at the nanoscale. Comparison for validation is with full-scale MD simulations here, but the computational cost of the enhanced CFD is negligible in comparison with the MD. Importantly, accurate predictions can be obtained in geometries that are more complex than the planar MD pre-simulation geometry that provides the nanoscale fluid properties. The robustness of the enhanced CFD is tested by application to water flow along a (15,15) carbon nanotube, and it is found that useful flow information can be obtained.
引用
收藏
页码:461 / 474
页数:14
相关论文
共 50 条
  • [31] Molecular dynamics simulations and applications in computational toxicology and nanotoxicology
    Selvaraj, Chandrabose
    Sakkiah, Sugunadevi
    Tong, Weida
    Hong, Huixiao
    FOOD AND CHEMICAL TOXICOLOGY, 2018, 112 : 495 - 506
  • [32] Computational microbiology of bacteria Advancements in molecular dynamics simulations
    Khalid, Syma
    Brandner, Astrid F.
    Juraschko, Nikolai
    Newman, Kahlan E.
    Pedebos, Conrado
    Prakaash, Dheeraj
    Smith, Iain P. S.
    Waller, Callum
    Weerakoon, Dhanushka
    STRUCTURE, 2023, 31 (11) : 1320 - 1327
  • [33] Computational Virology: Molecular Simulations of Virus Dynamics and Interactions
    Jefferys, Elizabeth E.
    Sansom, Mark S. P.
    PHYSICAL VIROLOGY: VIRUS STRUCTURE AND MECHANICS, 2019, 1215 : 201 - 233
  • [34] Scalable Reactive Molecular Dynamics Simulations for Computational Synthesis
    Li, Ying
    Nomura, Ken-Ichi
    Insley, Joseph A.
    Morozov, Vitali
    Kumaran, Kalyan
    Romero, Nichols A.
    Goddard, William A., III
    Kalia, Rajiv K.
    Nakano, Aiichiro
    Vashishta, Priya
    COMPUTING IN SCIENCE & ENGINEERING, 2019, 21 (05) : 64 - 75
  • [35] COMPUTATIONAL LIMITS OF CLASSICAL MOLECULAR-DYNAMICS SIMULATIONS
    PLIMPTON, S
    COMPUTATIONAL MATERIALS SCIENCE, 1995, 4 (04) : 361 - 364
  • [36] MOLECULAR DYNAMICS SIMULATIONS OF THERMAL INTERACTIONS IN NANOSCALE LIQUID CHANNELS
    Kim, BoHung
    Beskok, Ali
    Cagin, Tahir
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, VOL 13, PTS A AND B, 2009, : 897 - 905
  • [37] Stability of computational algorithms used in molecular dynamics simulations
    Satoh, A
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 1995, 117 (03): : 531 - 534
  • [38] Molecular Dynamics Simulations in Nanoscale Heat Transfer: A Mini Review
    Kim, Jiyoung
    Liu, Yuhan
    Luo, Tengfei
    Tian, Zhiting
    ASME JOURNAL OF HEAT AND MASS TRANSFER, 2025, 147 (03):
  • [39] Radial Fan Simulations by Computational Fluid Dynamics and Experimental Validation
    SanAndres, Unai
    Almandoz, Gaizka
    Poza, Javier
    Ugalde, Gaizka
    Escalada, Ana Julia
    2014 INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES (ICEM), 2014, : 2179 - 2185
  • [40] Computational Fluid Dynamics simulations of propeller wake effects on seabed
    Nguyen, V. T.
    Nguyen, H. H.
    Lou, J.
    Yde, L.
    MARITIME-PORT TECHNOLOGY AND DEVELOPMENT, 2015, : 125 - 132