Turbulent combustion modelling of a confined premixed jet flame including heat loss effects using tabulated chemistry

Turbulent combustion modelling of a confined premixed jet flame including heat loss effects using... •A turbulent combustion model based on the reaction progress variable is presented.•An optimal choice of the reaction progress variable is proposed.•Chemistry tabulation is based on laminar premixed flamelets including heat losses.•The model is suitable for Reynolds-averaged Navier Stokes and large-eddy simulations.•Good prediction capabilities are found for a turbulent premixed jet flame. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Applied Energy Elsevier

Turbulent combustion modelling of a confined premixed jet flame including heat loss effects using tabulated chemistry

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Publisher
Elsevier
Copyright
Copyright © 2015 Elsevier Ltd
ISSN
0306-2619
D.O.I.
10.1016/j.apenergy.2015.06.031
Publisher site
See Article on Publisher Site

Abstract

•A turbulent combustion model based on the reaction progress variable is presented.•An optimal choice of the reaction progress variable is proposed.•Chemistry tabulation is based on laminar premixed flamelets including heat losses.•The model is suitable for Reynolds-averaged Navier Stokes and large-eddy simulations.•Good prediction capabilities are found for a turbulent premixed jet flame.

Journal

Applied EnergyElsevier

Published: Oct 15, 2015

References

  • Fuel flexible distributed combustion for efficient and clean gas turbine engines
    Khalil, A.E.; Gupta, A.K.
  • A non-adiabatic flamelet progress variable approach for les of turbulent premixed flames
    Cecere, D.; Giacomazzi, E.; Picchia, F.; Arcidiacono, N.; Donato, F.; Verzicco, R.
  • Subgrid-scale stress modelling based on the square of the velocity gradient
    Nicoud, F.; Ducros, F.
  • Effect of flow field for colorless distributed combustion (cdc) for gas turbine combustion
    Arghode, V.K.; Gupta, A.K.

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