Skip to main navigation
Skip to search
Skip to main content
KAUST PORTAL FOR RESEARCHERS AND STUDENTS Home
Home
Profiles
Research units
Research output
Press/Media
Prizes
Courses
Equipment
Student theses
Datasets
Search by expertise, name or affiliation
Modeling turbulent reacting jets issuing into a hot and diluted coflow
F. C. Christo,
B. B. Dally
Research output
:
Contribution to journal
›
Article
›
peer-review
366
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Modeling turbulent reacting jets issuing into a hot and diluted coflow'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Coflow
100%
Reaction Jet
100%
Jet-in-hot-coflow
100%
Detailed Chemical Kinetics
40%
Flame Characteristics
40%
Eddy Dissipation Concept Model
40%
Coflow Flames
40%
Chemical Kinetic Model
20%
Turbulence Model
20%
Renormalization Group
20%
Numerical Modeling
20%
Low Oxygen
20%
Oxygen Level
20%
Non-premixed
20%
Flow Characteristics
20%
Turbulent Combustion
20%
Differential Diffusion Effects
20%
Methane-hydrogen Mixture
20%
Flame Extinction
20%
Oxygen Mass Fraction
20%
Diluted Combustion
20%
Skeletal Mechanism
20%
Axial Location
20%
Combustion Regime
20%
Oxygen Dilution
20%
Combustion Kinetic Model
20%
Kinetic Scheme
20%
Conserved Scalar
20%
Flamelet Model
20%
Flame Lift-off Height
20%
Coflow Burner
20%
Eddy Dissipation Concept
20%
PDF Model
20%
Modeling Standards
20%
Global Mechanism
20%
Hot Coflow
20%
Engineering
Mass Fraction
100%
Do Model
100%
Kinetic Model
100%
Axial Location
100%
Flamelets
100%
Numerical Modeling
100%
Dilution
100%