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Nonequilibrium thermodynamics of surfaces captures the energy conversions in a shock wave

Sammendrag

A theory for the entropy production in a shock wave was developed using Gibbs’ excess properties in the framework of non-equilibrium thermodynamics (NET) of surfaces. The theory was used to analyze numerical results from non-equilibrium molecular dynamics simulations. The Gibbs equation for surface excess thermodynamic variables was confirmed by comparison with a direct numerical evaluation of the entropy balance. The NET analysis showed that the dominant contribution to the entropy production is the dissipation of kinetic and compression energy. This opens the door to accurate representations of energy conversions in shock waves.
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Kategori

Vitenskapelig artikkel

Oppdragsgiver

  • Sigma2 / NN5092K
  • Research Council of Norway (RCN) / 262644

Språk

Engelsk

Forfatter(e)

Institusjon(er)

  • Norges teknisk-naturvitenskapelige universitet
  • SINTEF Energi AS / Gassteknologi

År

2020

Publisert i

Chemical Physics Letters: X

ISSN

2590-1419

Forlag

Elsevier

Årgang

7

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