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The structure of multidimensional strained flames under transcritical conditions
Authors:L Pons  N Darabiha  S Candel  T Schmitt  B Cuenot
Institution:aLaboratoire EM2C CNRS, École centrale Paris, 92295 Châtenay Malabry cedex, France;bInstitut universitaire de France;cCerfacs, 42, avenue G. Coriolis, 31100 Toulouse, France
Abstract:Strained flames are commonly used to study the structure of reactive layers and describe the local properties of turbulent combustion. This model is attractive because constant strain rate flames only depend on a transverse coordinate and can be treated as a one-dimensional problem. This configuration is considered in a multidimensional context in which the strained flow is obtained by two counterflowing streams of reactants. It is used to examine the structure of transcritical strained flames in which one or two reactants are injected at a high pressure exceeding the critical value while their temperature is below the critical value. Calculations are carried out in a two-dimensional domain to test numerical models developed for multidimensional simulations and test thermodynamic and transport models devised to deal with high pressure real gas effects. Multidimensional strained flame calculations carried out in this study serve to check the validity of a new version of a Navier–Stokes flow solver (AVBP) conceived to deal with transcritical combustion of interest to liquid propellant rocket applications. This article describes the basic elements of such simulations and discusses results of calculations. It is shown that the calculated multidimensional strained flames have the expected features in terms of structure and response to the imposed strain rate. To cite this article: L. Pons et al., C. R. Mecanique 337 (2009).
Keywords:Combustion  Transcritical combustion  Strained flame  High pressureMots-clé  s: Combustion  Combustion transcritique  Flamme é  tiré  e  Haute pression
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