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Dynamical properties of a confined diatomic fluid undergoing zero mean oscillatory flow: Effect of molecular rotation

journal contribution
posted on 2024-11-01, 05:10 authored by J.S. Hansen, B. D. Todd, Peter DaivisPeter Daivis
In this paper we investigate the spatiotemporal dynamics of a diatomic fluid undergoing zero mean oscillatory flow in a slit pore. The study is based on nonequilibrium molecular dynamics simulations together with two limiting solutions to the Navier-Stokes equations which include the effect of molecular rotation. By examining the viscoelastic properties of the system we can estimate the extent of the Newtonian regime, and a direct comparison between the molecular dynamics data and the solutions to the Navier-Stokes equations is then possible. It is found that the agreement is excellent, and that the vortex viscosity can be estimated by fitting the data obtained in the molecular dynamics simulations to the solutions to the Navier-Stokes equations. The quantitative effect of the coupling between the linear momentum and the spin angular momentum on flow is also investigated. We find that the maximum flow can be reduced up to 3-4 % due to the coupling.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1103/PhysRevE.77.066707
  2. 2.
    ISSN - Is published in 24700045

Journal

Physical Review E

Volume

77

Number

66707

Issue

6

Start page

1

End page

10

Total pages

10

Publisher

American Physical Society

Place published

United States

Language

English

Copyright

© 2008 The American Physical Society

Former Identifier

2006008139

Esploro creation date

2020-06-22

Fedora creation date

2009-07-17