Modelling of stationary three-dimensional separated air flows around an Ahmed reference model
ESAIM. Proceedings, Tome 7 (1999), pp. 173-182
Cet article a éte moissonné depuis la source EDP Sciences
When analysing the topology of turbulent flow systems for alternative vehicle configurations, conventional wind-tunnel tests may not be sufficient. Vehicle development teams investigating this kind of physical phenomenon are increasingly interested in numerical simulation, but reliable implementation of computational techniques in automotive aerodynamics requires validation to confirm that such methods are capable of accurately reproducing experimentally proven physical behaviour. We address this issue by comparing the results of experimental wind-tunnel tests with simulated values for aerodynamic drag coefficient and vortex wake flows at different angles of car rear window inclination, using an Ahmed (AHMED S.R.) reference model.
@article{EP_1999_7_a15,
author = {P. Gilli\'eron and F. Chometon},
title = {Modelling of stationary three-dimensional separated air flows around an {Ahmed} reference model},
journal = {ESAIM. Proceedings},
pages = {173--182},
year = {1999},
volume = {7},
doi = {10.1051/proc:1999016},
language = {en},
url = {http://geodesic.mathdoc.fr/articles/10.1051/proc:1999016/}
}
TY - JOUR AU - P. Gilliéron AU - F. Chometon TI - Modelling of stationary three-dimensional separated air flows around an Ahmed reference model JO - ESAIM. Proceedings PY - 1999 SP - 173 EP - 182 VL - 7 UR - http://geodesic.mathdoc.fr/articles/10.1051/proc:1999016/ DO - 10.1051/proc:1999016 LA - en ID - EP_1999_7_a15 ER -
%0 Journal Article %A P. Gilliéron %A F. Chometon %T Modelling of stationary three-dimensional separated air flows around an Ahmed reference model %J ESAIM. Proceedings %D 1999 %P 173-182 %V 7 %U http://geodesic.mathdoc.fr/articles/10.1051/proc:1999016/ %R 10.1051/proc:1999016 %G en %F EP_1999_7_a15
P. Gilliéron; F. Chometon. Modelling of stationary three-dimensional separated air flows around an Ahmed reference model. ESAIM. Proceedings, Tome 7 (1999), pp. 173-182. doi: 10.1051/proc:1999016
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