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Viscosity kernel of molecular fluids: Butane and polymer melts

journal contribution
posted on 2024-11-01, 06:15 authored by R Puscasu, B. D. Todd, Peter DaivisPeter Daivis, J.S. Hansen
The wave-vector dependent shear viscosities for butane and freely jointed chains have been determined. The transverse momentum density and stress autocorrelation functions have been determined by equilibrium molecular dynamics in both atomic and molecular hydrodynamic formalisms. The density, temperature, and chain length dependencies of the reciprocal and real-space viscosity kernels are presented. We find that the density has a major effect on the shape of the kernel. The temperature range and chain lengths considered here have by contrast less impact on the overall normalized shape. Functional forms that fit the wave-vector-dependent kernel data over a large density and wave-vector range have also been tested. Finally, a structural normalization of the kernels in physical space is considered. Overall, the real-space viscosity kernel has a width of roughly 3¿6 atomic diameters, which means that generalized hydrodynamics must be applied in predicting the flow properties of molecular fluids on length scales where the strain rate varies sufficiently in the order of these dimensions (e.g., nanofluidic flows).

History

Related Materials

  1. 1.
    DOI - Is published in 10.1103/PhysRevE.82.011801
  2. 2.
    ISSN - Is published in 24700045

Journal

Physical Review E

Volume

82

Number

011801

Issue

1

Start page

1

End page

15

Total pages

15

Publisher

American Physical Society

Place published

United States

Language

English

Copyright

© 2010 Elsevier Inc.

Former Identifier

2006019249

Esploro creation date

2020-06-22

Fedora creation date

2010-11-19

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