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Chemically reacting turbulent flows
Michael F. Modest
, Daniel C. Haworth
Mechanical Engineering
Institute for Computational and Data Sciences (ICDS)
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
1
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Scopus citations
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Keyphrases
Turbulent Fluctuation
100%
Chemically Reacting
100%
Reacting Flow
100%
Probability Density Function
66%
Reaction Systems
66%
Reynolds-averaged
66%
Ancillary
33%
Dynamic Range
33%
Soot
33%
Radiative Heat Transfer
33%
Liquid Fuel
33%
Fuel Spray
33%
Turbulent Flames
33%
Probability Density Function Model
33%
Local Mean
33%
Gas Phase
33%
Lower Limit
33%
Effective Approach
33%
Partial Differential Equations
33%
Combustion System
33%
Turbulent Combustion
33%
Spatial Filtering
33%
Multiphase Systems
33%
Direct numerical
33%
Large Eddies
33%
General Notion
33%
Laminar Flame
33%
Engineering
Turbulent Flow
100%
Probability Density Function
100%
Reacting System
66%
Dynamic Range
33%
Radiative Heat Transfer
33%
Fuel Spray
33%
Local Mean
33%
Gas-Phase
33%
Effective Approach
33%
Lower Limit
33%
Ancillaries
33%
Multiphase System
33%
Partial Differential Equation
33%
Chemical Engineering
Reacting System
100%