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Evaluation of the Accuracy of Selected Syngas Chemical Mechanisms
Fahad M Alzahrani
, Yinka S Sanusi
, Konstantina Vogiatzaki
, Ahmed F Ghoniem
, Mohamed A. Habib
, Esmail M. A. Mokheimer
Advanced Engineering Centre
Research output
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peer-review
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Keyphrases
Equivalence Ratio
100%
Chemical Mechanism
100%
Syngas
100%
Laminar Flame Speed
75%
Reduction Kinetics
75%
Operating Conditions
50%
Operating Pressure
50%
Preheating Temperature
50%
Syngas Composition
50%
Stoichiometry
25%
Low Temperature
25%
Numerical Results
25%
Prediction Accuracy
25%
NOx Emission
25%
Combustion System
25%
Pressure-temperature
25%
Computational Cost
25%
Predictive Ability
25%
Laminar Flame Thickness
25%
Combustion Mechanism
25%
Global Mechanism
25%
Syngas Combustion
25%
Lean Conditions
25%
Species Concentration
25%
Thermal NOx
25%
Hydrogen Content
25%
Modern Fuel
25%
Lean Premixed
25%
Numerical Combustion
25%
Flame Thickness
25%
Detailed Mechanism
25%
Syngas Flame
25%
Fuel Flexibility
25%
Engineering
Chemical Mechanism
100%
Syngas
100%
Equivalence Ratio
50%
Operating Pressure
25%
Preheat Temperature
25%
Relative Importance
12%
Low-Temperature
12%
Predictive Capability
12%
Computational Cost
12%
Reactant
12%
Reaction Stoichiometry
12%
Hydrogen
12%