Large eddy simulation for aerodynamics: status and perspectives

Author:

Sagaut Pierre1,Deck Sébastien2

Affiliation:

1. Institut Jean Le Rond d'Alembert, Université Pierre et Marie Curie-Paris 64 place Jussieu, case 162, 75252 Paris Cedex 5, France

2. Department of Applied Aerodynamics, ONERA29 avenue de la Division Leclerc, BP 72, 92322 Châtillon Cedex, France

Abstract

The present paper provides an up-to-date survey of the use of large eddy simulation (LES) and sequels for engineering applications related to aerodynamics. Most recent landmark achievements are presented. Two categories of problem may be distinguished whether the location of separation is triggered by the geometry or not. In the first case, LES can be considered as a mature technique and recent hybrid Reynolds-averaged Navier–Stokes (RANS)–LES methods do not allow for a significant increase in terms of geometrical complexity and/or Reynolds number with respect to classical LES. When attached boundary layers have a significant impact on the global flow dynamics, the use of hybrid RANS–LES remains the principal strategy to reduce computational cost compared to LES. Another striking observation is that the level of validation is most of the time restricted to time-averaged global quantities, a detailed analysis of the flow unsteadiness being missing. Therefore, a clear need for detailed validation in the near future is identified. To this end, new issues, such as uncertainty and error quantification and modelling, will be of major importance. First results dealing with uncertainty modelling in unsteady turbulent flow simulation are presented.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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