Title of article :
Application of PDF mixing models to premixed flames with differential diffusion
Author/Authors :
Richardson، نويسنده , , Edward S. and Chen، نويسنده , , Jacqueline H.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
17
From page :
2398
To page :
2414
Abstract :
Differential diffusion alters the balance of reaction and diffusion in turbulent premixed combustion, affecting the performance and emissions of combustion devices. Modelling combustion devices with Probability or Filtered Density Function (PDF or FDF) methods provides an exact treatment for the change in composition due to chemical reaction, while molecular mixing has to be modelled. Previous PDF molecular mixing models do not account for differential diffusion in a manner which satisfies realizability requirements. A new approach for treating differential diffusion, which ensures realizability, is proposed for pairwise-exchange mixing models in general, and applied in the Interaction by Exchange with the Mean (IEM) model of Dopazo [26], and in the Euclidean Minimum Spanning Tree (EMST) model of Subramaniam and Pope [5]. The new differential diffusion models are referred to as IEM-DD and EMST-DD respectively. s from two and three-dimensional DNS of turbulent premixed methane–air combustion show that mixing rates and conditional statistics of species mass fractions depend on species diffusivities and the combustion regime. Zero-dimensional PDF model results obtained for the two-dimensional DNS case show that the EMST-DD model best reproduces the features that characterize differential diffusion in the DNS. The essential feature of the EMST-DD model, which accounts for its success in turbulent premixed combustion, is that differential mixing rates are imposed within a model which mixes locally in composition space.
Keywords :
Probability Density Function , direct numerical simulation , Premixed turbulent combustion , Mixing models , Differential diffusion
Journal title :
Combustion and Flame
Serial Year :
2012
Journal title :
Combustion and Flame
Record number :
2276398
Link To Document :
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