Content area

Abstract

We present here a model for two phase flows which is simpler than the 6-equations models (with two densities, two velocities, two temperatures) but more accurate than the standard mixture models with 4 equations (with two densities, one velocity and one temperature). We are interested in the case when the two-phases have been interacting long enough for the drag force to be small but still not negligible. The so-called Homogeneous Equilibrium Mixture Model (HEM) that we present is dealing with both mixture and relative quantities, allowing in particular to follow both a mixture velocity and a relative velocity. This relative velocity is not tracked by a conservation law but by a closure law (drift relation), whose expression is related to the drag force terms of the two-phase flow. After the derivation of the model, a stability analysis and numerical experiments are presented. [PUBLICATION ABSTRACT]

Details

Title
Modelling of an Homogeneous Equilibrium Mixture Model (HEM)
Author
Bernard-champmartin, A; Poujade, O; Mathiaud, J; Ghidaglia, J-m
Pages
1-21
Publication year
2014
Publication date
Feb 2014
Publisher
Springer Nature B.V.
ISSN
01678019
e-ISSN
15729036
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1477911925
Copyright
Springer Science+Business Media Dordrecht 2014