JOURNAL ARTICLE

A filtered flame approach for simulation of unsteady laminar premixed flames

Christophe Duwig

Year: 2009 Journal:   Combustion Theory and Modelling Vol: 13 (2)Pages: 251-268   Publisher: Taylor & Francis

Abstract

The simulation of laminar flames consists of capturing the evolution of a very large number of species that may react within a broad range of time scales. It results in a highly non-linear stiff numerical problem that requires large computational resources. In the present paper, an alternative approach for the simulation of unsteady premixed flames is proposed. The approach focuses on describing the flame using a single scalar only (so-called progress variable) on relatively coarse grids. The unresolved details of the flame structure are analysed and described in term of spatial filtering. A model originally developed for large eddy simulation is discussed in the framework of unsteady laminar flames. The ability of the present approach to represent the filtered flame structure is validated against detailed numerical simulations of freely propagating laminar flames. Further, simulations of steady and unsteady laminar Bunsen flames are presented with a focus on the influence of the numerical grid and filter width upon the flame dynamics.

Keywords:
Laminar flow Large eddy simulation Mechanics Premixed flame Laminar flame speed Computer simulation Flame structure Filter (signal processing) Scalar (mathematics) Turbulence Chemistry Computer science Physics Combustion Mathematics Combustor Geometry Physical chemistry

Metrics

10
Cited By
1.37
FWCI (Field Weighted Citation Impact)
21
Refs
0.81
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Combustion and flame dynamics
Physical Sciences →  Engineering →  Computational Mechanics
Advanced Combustion Engine Technologies
Physical Sciences →  Chemical Engineering →  Fluid Flow and Transfer Processes
Computational Fluid Dynamics and Aerodynamics
Physical Sciences →  Engineering →  Computational Mechanics

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