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LES of a high-Reynolds number, chemically reacting mixing layer
Pietro Ferrero
, Anand Kartha
,
Pramod K Subbareddy
,
Graham V Candler
, Paul E. Dimotakis
Aerospace Engineering and Mechanics
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
5
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Scopus citations
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Dive into the research topics of 'LES of a high-Reynolds number, chemically reacting mixing layer'. Together they form a unique fingerprint.
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Keyphrases
High Reynolds number
100%
Chemically Reacting
100%
Product Formation
100%
Reacting Mixing Layer
100%
Mixing Layer
66%
Temperature Rise
66%
Inert Gas
66%
Mixture Fraction
66%
Splitter Plate
66%
Large Eddy Simulation
33%
Boundary Layer
33%
Chemical Mechanism
33%
Laminar Boundary Layer
33%
Probability Density Function
33%
H2 Gas
33%
Mean Velocity
33%
Fast Reactions
33%
Most Probable
33%
Three Dimensional Simulation
33%
Heat Release
33%
Low Velocity
33%
Transverse Coordinates
33%
Two-dimensional Simulation
33%
Ratio Model
33%
Product Temperature
33%
Molecular Mixing
33%
Boundary Layer Profile
33%
Filtered Mass Density Function
33%
Entrainment Ratio
33%
Large Reynolds number
33%
Formation Profiles
33%
Engineering
Mixing Layer
100%
Product Formation
100%
High Reynolds Number
100%
Temperature Rise
66%
Boundary Layer
33%
Laminar Boundary Layer
33%
Two Dimensional
33%
Experimental Result
33%
Chemical Mechanism
33%
Heat Release
33%
Large Reynolds Number
33%
Direct Measure
33%
Overprediction
33%
Entrainment Ratio
33%
Probability Density Function
33%
Large Eddy Simulation
33%
Hydrogen
33%
Earth and Planetary Sciences
Rare Gas
100%
High Reynolds Number
100%
Laminar Boundary Layer
50%
Large Eddy Simulation
50%
Probability Density Function
50%
Reynolds Number
50%
Boundary Layer
50%
Hydrogen
50%
Chemical Engineering
Hydrogen
100%