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Heat Transfer in Industrial Combustion

Heat Transfer in Industrial Combustion by Jr. Baukal
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Introduction
Importance of Heat Transfer in Industrial Combustion
Literature Discussion
Combustion System Components
Some Fundamentals of Combustion
Combustion Chemistry
Combustion Properties
Exhaust Product Transport Properties
Heat Transfer Modes
Introduction
Convection
Radiation
Conduction
Phase Change
Heat Sources and Sinks
Heat Sources
Heat Sinks
Computer Modeling
Combustion Modeling
Modeling Approaches
Simplified Models
Computational Fluid Dynamic Modeling
Experimental Techniques
Introduction
Heat Flux
Temperature
Gas Flow
Gas Species
Other Measurements
Physical Modeling
Flame Impingement
Introduction
Experimental Conditions
Semi-Analytical Heat Transfer Solutions
Empirical Heat Transfer Correlations
Heat Transfer from Burners
Introduction
Open-Flame Burners
Radiant Burners
Effects on Heat Transfer
In-Flame Treatment
Heat Transfer in Furnaces
Introduction
Furnaces
Heat Recovery
Lower Temperature Applications
Introduction
Ovens and Dryers
Fired Heaters
Heat Treating
Higher Temperature Applications
Introduction
Metals Industry
Minerals Industry
Waste Incineration
Advanced Combustion Systems
Introduction
Oxygen-Enhanced Combustion
Submerged Combustion
Miscellaneous
Appendices
Reference Sources for Further Information
Common Conversions
Methods of Expressing Mixture Ratios for CH4, C3H8, and H2
Properties for CH4, C3H8, and H2 Flames
Fluid Dynamics Equations
Material Properties
Author Index
Subject Index

Each chapter contains a References section.
CRC Press; May 2000
569 pages; ISBN 9781420039757
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Title: Heat Transfer in Industrial Combustion
Author: Jr. Baukal
 
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