Probability density function modelling of molecular mixing in flames with differential diffusion
Probability density function modelling of molecular mixing in flames with differential diffusion
Motivated by the fact that differential diffusion can affect pollutant emission and flame stability in practical combustion systems, this paper presents a modified Euclidean Minimum Spanning Tree mixing model which accounts for differential diffusion. The new Probability Density Function modelling satisfies requirements of realizability and conservation of mass, and validation is conducted by comparison with Direct Numerical Simulation data
Richardson, E.
a8357516-e871-40d8-8a53-de7847aa2d08
Chen, J.H.
fd295f97-acff-4984-a655-ee18d3b2a734
27 June 2011
Richardson, E.
a8357516-e871-40d8-8a53-de7847aa2d08
Chen, J.H.
fd295f97-acff-4984-a655-ee18d3b2a734
Richardson, E. and Chen, J.H.
(2011)
Probability density function modelling of molecular mixing in flames with differential diffusion.
5th European Combustion Meeting, Cardiff, United Kingdom.
27 Jun - 01 Jul 2011.
6 pp
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Motivated by the fact that differential diffusion can affect pollutant emission and flame stability in practical combustion systems, this paper presents a modified Euclidean Minimum Spanning Tree mixing model which accounts for differential diffusion. The new Probability Density Function modelling satisfies requirements of realizability and conservation of mass, and validation is conducted by comparison with Direct Numerical Simulation data
Text
Richardson_ECM_2011_submitted.pdf
- Author's Original
More information
Published date: 27 June 2011
Venue - Dates:
5th European Combustion Meeting, Cardiff, United Kingdom, 2011-06-27 - 2011-07-01
Organisations:
Aerodynamics & Flight Mechanics Group
Identifiers
Local EPrints ID: 381702
URI: http://eprints.soton.ac.uk/id/eprint/381702
PURE UUID: 5c809751-6847-4ee2-a4e1-ed61d4225fa2
Catalogue record
Date deposited: 19 Oct 2015 07:56
Last modified: 15 Mar 2024 03:37
Export record
Contributors
Author:
J.H. Chen
Download statistics
Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.
View more statistics