The Influence of Gas-Wall and Gas-Gas Interactions on the Accommodation Coefficients for Rarefied Gases: A Molecular Dynamics Study

被引:12
|
作者
Nejad, Shahin Mohammad [1 ]
Nedea, Silvia [1 ]
Frijns, Arjan [1 ]
Smeulders, David [1 ]
机构
[1] Eindhoven Univ Technol, Dept Mech Engn, Energy Technol, NL-5600 MB Eindhoven, Netherlands
关键词
rarefied gas; accommodation coefficient; molecular dynamics (MD) simulation; Ar-Au interaction; He-Au interaction; mixing rules; ab-initio potentials; SURFACE; ENERGY; PLATINUM; INTERFACES; FLOW;
D O I
10.3390/mi11030319
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Molecular dynamics (MD) simulations are conducted to determine energy and momentum accommodation coefficients at the interface between rarefied gas and solid walls. The MD simulation setup consists of two parallel walls, and of inert gas confined between them. Different mixing rules, as well as existing ab-initio computations combined with interatomic Lennard-Jones potentials were employed in MD simulations to investigate the corresponding effects of gas-surface interaction strength on accommodation coefficients for Argon and Helium gases on a gold surface. Comparing the obtained MD results for accommodation coefficients with empirical and numerical values in the literature revealed that the interaction potential based on ab-initio calculations is the most reliable one for computing accommodation coefficients. Finally, it is shown that gas-gas interactions in the two parallel walls approach led to an enhancement in computed accommodation coefficients compared to the molecular beam approach. The values for the two parallel walls approach are also closer to the experimental values.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Optical Investigation of the Accommodation Coefficients of the Molecular Rotations of a diluted Gas
    van Wijk, W. R.
    ZEITSCHRIFT FUR PHYSIK, 1932, 75 (9-10): : 584 - 596
  • [32] Rarefied gas flow in rough microchannels by molecular dynamics simulation
    Cao, BY
    Chen, M
    Guo, ZY
    CHINESE PHYSICS LETTERS, 2004, 21 (09) : 1777 - 1779
  • [33] Molecular Dynamics Simulations of High Speed Rarefied Gas Flows
    Dongari, Nishanth
    Zhang, Yonghao
    Reese, Jason M.
    28TH INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS 2012, VOLS. 1 AND 2, 2012, 1501 : 895 - 902
  • [34] Numerical study of isotope separation phenomena of noble gases by dc discharge as rarefied gas dynamics
    Asami, M
    Kano, K
    Akatsuka, H
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 2002, 20 (04): : 1303 - 1313
  • [35] Molecular-kinetic study of multilayers gas-adsorption in a rarefied gas environment
    Yu, Hsinchen
    Zhang, Xiaoping
    PHYSICS OF FLUIDS, 2022, 34 (12)
  • [36] Molecular simulation study of aluminum-noble gas interfacial thermal accommodation coefficients
    Sha, Haoyan
    Faller, Roland
    Tetiker, Gulcin
    Woytowitz, Peter
    AICHE JOURNAL, 2018, 64 (01) : 338 - 345
  • [37] Determination of momentum accommodation coefficients and velocity distribution function for Noble gas-polymeric surface interactions using molecular dynamics simulation
    Yousefi-Nasab, Sadegh
    Safdari, Jaber
    Karimi-Sabet, Javad
    Norouzi, Ali
    Amini, Elham
    APPLIED SURFACE SCIENCE, 2019, 493 : 766 - 778
  • [38] Molecular Dynamics Simulation on Rarefied Gas Flow in Different Nanochannel Geometries
    Kim, J. H.
    Frijns, A. J. H.
    Nedea, S. V.
    van Steenhoven, A. A.
    28TH INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS 2012, VOLS. 1 AND 2, 2012, 1501 : 911 - 918
  • [39] Effect of the wall structure on nanochannel gas flow: A molecular dynamics study
    Yasuoka, Haruka
    Imae, Tomohiko
    Kaneda, Masayuki
    Suga, Kazuhiko
    JOURNAL OF THERMAL SCIENCE AND TECHNOLOGY, 2015, 10 (02):
  • [40] Gas-surface interactions using accommodation coefficients for a dilute and a dense gas in a micro- or nanochannel: Heat flux predictions using combined molecular dynamics and Monte Carlo techniques
    Nedea, S. V.
    van Steenhoven, A. A.
    Markvoort, A. J.
    Spijker, P.
    Giordano, D.
    PHYSICAL REVIEW E, 2014, 89 (05):