Experimental and numerical study of turbulent flame structures of a spray jet flame
File(s)ECM2017_0431_M_v_01.pdf (5.85 MB)
Published version
Author(s)
Type
Conference Paper
Abstract
The flame structure of a laboratory scale n-heptane spray flame is investigated experimentally and numerically. The
experimental burner is an open chamber with an ambient temperature co-flow surrounding a hollow cone simplex
atomiser. OH-PLIF measurements are performed to study the interaction between turbulence, droplets, and chemistry.
The simulation is performed using a Large Eddy Simulation with combustion modelling included by means of the
solution of the transport of the joint-
sgs
probability density function using the stochastic fields method with promising
results.
experimental burner is an open chamber with an ambient temperature co-flow surrounding a hollow cone simplex
atomiser. OH-PLIF measurements are performed to study the interaction between turbulence, droplets, and chemistry.
The simulation is performed using a Large Eddy Simulation with combustion modelling included by means of the
solution of the transport of the joint-
sgs
probability density function using the stochastic fields method with promising
results.
Date Issued
2017-04-21
Date Acceptance
2016-11-14
Citation
European Combustion Meeting 2017, 2017
Publisher
Combustion Institute
Journal / Book Title
European Combustion Meeting 2017
Copyright Statement
© 2017 The Authors.
Sponsor
ALSTOM (Switzerland) Ltd
The Royal Society
Grant Number
4500697255
UF130570
Source
European Combustion Meeting
Publication Status
Published
Start Date
2017-04-18
Finish Date
2017-04-21
Coverage Spatial
Dubrovnik, Croatia