Two numerical methods, based on high order finite volume formulations and upwind schemes, are used to compute the two‐ and three‐dimensional flow field in a transonic nozzle. The influence of numerical diffusivity, boundary treatment and mesh structure is explored for inviscid and turbulent configurations. First order computations provide significantly different inviscid results. However, high order methods lead to similar solutions. An explanation of the error generated through the shockwave is proposed in this case. The two‐dimensional interaction of the shock with the thin turbulent boundary layer developing on the bump wall is also presented. Good agreement between both approaches is obtained considering the rapid thickening of the boundary layer due to the shock. Furthermore, the downstream velocity recovery is almost identical. Only slight discrepancies occur in the main flow, near the outer edge of the boundary layer. These seem to be related to the way the turbulence model deals with the free stream turbulence. Finally,preliminary three‐dimensional unstructured turbulent results are presented and discussed.
Article navigation
1 October 1995
Research Article|
October 01 1995
Numerical simulations of a three‐dimensional nozzle, from inviscid to turbulent flows
S. Aubert;
S. Aubert
Ecole Centrale de Lyon/UniversitéClaude Bernard—Lyon 1, Laboratoire de Méchanique des Fluides et d’Acoustique(LMFA), URA CNRS 263, Ecole Centrale de Lyon, 36, avenue Guy de Collongue, BP 163, 69131 Ecully Cedex, France
Search for other works by this author on:
L. Hallo;
L. Hallo
Ecole Centrale de Lyon/UniversitéClaude Bernard—Lyon 1, Laboratoire de Méchanique des Fluides et d’Acoustique(LMFA), URA CNRS 263, Ecole Centrale de Lyon, 36, avenue Guy de Collongue, BP 163, 69131 Ecully Cedex, France
Search for other works by this author on:
P. Ferrand;
P. Ferrand
Ecole Centrale de Lyon/UniversitéClaude Bernard—Lyon 1, Laboratoire de Méchanique des Fluides et d’Acoustique(LMFA), URA CNRS 263, Ecole Centrale de Lyon, 36, avenue Guy de Collongue, BP 163, 69131 Ecully Cedex, France
Search for other works by this author on:
M. Buffat
M. Buffat
Ecole Centrale de Lyon/UniversitéClaude Bernard—Lyon 1, Laboratoire de Méchanique des Fluides et d’Acoustique(LMFA), URA CNRS 263, Ecole Centrale de Lyon, 36, avenue Guy de Collongue, BP 163, 69131 Ecully Cedex, France
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 1758-6585
Print ISSN: 0961-5539
© MCB UP Limited
1995
International Journal of Numerical Methods for Heat & Fluid Flow (1995) 5 (10): 889–905.
Citation
Aubert S, Hallo L, Ferrand P, Buffat M (1995), "Numerical simulations of a three‐dimensional nozzle, from inviscid to turbulent flows". International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 5 No. 10 pp. 889–905, doi: https://doi.org/10.1108/EUM0000000004127
Download citation file:
New and popular articles
Suggested Reading
Computations of aerodynamic drag for spinning transonic projectiles using an implicit TVD scheme
Engineering Computations (June,1995)
Mach number effects on buffeting flow on a half wing-body configuration
International Journal of Numerical Methods for Heat & Fluid Flow (September,2016)
Assessment of turbulence models for transonic oscillating airfoil
International Journal of Numerical Methods for Heat & Fluid Flow (November,2017)
A second order finite volume technique for simulating transport in anisotropic media
International Journal of Numerical Methods for Heat & Fluid Flow (February,2003)
Finite line method for simulating 2D incompressible flow and heat transfer
International Journal of Numerical Methods for Heat & Fluid Flow (May,2025)
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
