Direct Numerical Simulation for Turbulent Reacting Flows

Author:   Thierry Baritaud ,  Thierry Poinsot ,  Markus Baum
Publisher:   Editions Technip
ISBN:  

9782710806981


Pages:   318
Publication Date:   May 1996
Format:   Hardback
Availability:   Available To Order   Availability explained
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Direct Numerical Simulation for Turbulent Reacting Flows


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Overview

Contents: Description of accurate boundary conditions for the simulation of reactive flows. Parallel direct numerical simulation of turbulent reactive flow. Flame-wall interaction and heat flux modelling in turbulent channel flow. A numerical study of laminar flame wall interaction with detailed chemistry: wall temperature effects. Modeling and simulation of turbulent flame kernel evolution. Experimental and theoretical analysis of flame surface density modelling for premixed turbulent combustion. Gradient and counter-gradient transport in turbulent premixed flames. Direct numerical simulation of turbulent flames with complex chemical kinetics. Effects of curvature and unsteadiness in diffusion flames. Implications for turbulent diffusion combustion. Numerical simulations of autoignition in turbulent mixing flows. Stabilization processes of diffusion flames. References.

Full Product Details

Author:   Thierry Baritaud ,  Thierry Poinsot ,  Markus Baum
Publisher:   Editions Technip
Imprint:   Editions Technip
Dimensions:   Width: 16.00cm , Height: 2.00cm , Length: 24.00cm
Weight:   0.590kg
ISBN:  

9782710806981


ISBN 10:   2710806983
Pages:   318
Publication Date:   May 1996
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Postgraduate, Research & Scholarly
Format:   Hardback
Publisher's Status:   Active
Availability:   Available To Order   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

Description of accurate boundary conditions for the simulation of reactive flows; parallel direct numerical simulation of turbulent reactive flow; flame-wall interaction and heat flux modelling in turbulent channel flow; a numerical study of laminar flame wall interaction with detailed chemistry: wall temperature effects; modelling and simulation of turbulent flame kernel evolution; experimental and theoretical analysis of flame surface density modelling for premixed turbulent combustion; gradient and counter-gradient transport in turbulent premixed flames; direct numerical simulation of turbulent flames with complex chemical kinetics; effects of curvature and unsteadiness in diffusion flames; implications for turbulent diffusion combustion; numerical simulations of autoignition in turbulent mixing flows; stabilization processes of diffusion flames; references.

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