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Coal combustion modeling: A comparative study
Lethukuthula N. Vilakazi
,
Daniel Madyira
Mechanical Engineering Science
Tshwane University of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Citations (Scopus)
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Dive into the research topics of 'Coal combustion modeling: A comparative study'. Together they form a unique fingerprint.
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Keyphrases
Boiler
100%
Coal Combustion Modeling
100%
Coal Combustion
60%
Non-premixed
60%
Model Validation
40%
Combustion Process
40%
Environmental Protection
20%
Probability Density Function
20%
Temperature Gradient
20%
Energy Conservation
20%
Species Composition
20%
Power Generation
20%
Combustion
20%
Validation Data
20%
Power Source
20%
ANSYS Fluent
20%
Species Transport
20%
Limit Models
20%
Two-species Model
20%
Coal Combustion Process
20%
Devolatization
20%
Do Not Track
20%
Major Powers
20%
Function-mixture
20%
Engineering
Comparative Study
100%
Boiler
100%
Coal Combustion
100%
Combustion Modeling
100%
Scanning Tunneling Microscopy
60%
Power Generation
20%
Power Source
20%
Environmental Protection
20%
Conservation of Energy
20%
Boundary Condition
20%
Probability Density Function
20%
Temperature Gradient
20%
Thermal Gradient
20%
Physics
Coal Combustion
100%
Probability Theory
20%
Temperature Gradients
20%
Boundary Condition
20%
Transportation
20%
Chemical Engineering
Thermal Gradient
100%