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Analytical and numerical results on the attenuation and dispersion of an acoustic wave through a two‐phase flow

T. Basset (Equipe Ecoulements Diphasiques et Réactifs, Université de Provence Centre de Saint Jérôme, Marseille, France)
E. Daniel (Equipe Ecoulements Diphasiques et Réactifs, Université de Provence Centre de Saint Jérôme, Marseille, France)
J.C. Loraud (Equipe Ecoulements Diphasiques et Réactifs, Université de Provence Centre de Saint Jérôme, Marseille, France)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 1 November 1997

319

Abstract

Presents validation of the Eulerian approach for unsteady two‐phase flows, whose behaviour depends on the coupling between the two phases, on the basis of the study of attentuation and dispersion of an acoustic wave propagating into a one dimensional two‐phase flow. This approach and the corresponding numerical aspects are accurate enough for later applications in more complex geometries, where “vortex shedding” phenomena take place. Attenuation and dispersion of a pressure wave in a two‐phase medium of rest was previously studied by Temkin and Dobbins. Present work is an extension of this theory to the case of a two‐phase flow. This theoretical approach leads to a numerical solution of the problem. Compares the derived results with those obtained from a direct numerical simulation based on MacCormack scheme in a finite volume formulation. Verifies that analytical and numerical approaches are in good agreement.

Keywords

Citation

Basset, T., Daniel, E. and Loraud, J.C. (1997), "Analytical and numerical results on the attenuation and dispersion of an acoustic wave through a two‐phase flow", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 7 No. 7, pp. 722-736. https://doi.org/10.1108/09615539710185604

Publisher

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MCB UP Ltd

Copyright © 1997, MCB UP Limited

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