Modeling of Combustion Systems provides accessible instruction for the operator or engineer to model combustion responses such as NOx, CO, flame dimensions, heat flux, or others as a function of input factors such as excess oxygen, volumetric heat release, and fuel composition.
Modeling of Combustion Systems provides accessible instruction for the operator or engineer to model combustion responses such as NOx, CO, flame dimensions, heat flux, or others as a function of input factors such as excess oxygen, volumetric heat release, and fuel composition.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Joseph Colannino earned his undergraduate degree in chemical engineering from the California Polytechnic University at Pomona (B.S.Ch.E) and his master's degree in research management from the University of Oklahoma (MSKM, emphasis ODYN) and holds a Ph.D. in theology. With more than forty years' experience in the combustion and fuels industries, his work includes combustion equipment of all stripes. Dr. Colannino has consulted for many industries including paper and pulp, petroleum and petrochemical, municipal solid waste-to-energy, electrical generation, and petroleum and petrochemicals plants for a wide variety of reactors and fired heaters including ethylene-cracking units, hydrogen-reforming units, and many process heaters. He pioneered or applied many novel NOx remediation strategies and holds scores of related patents on combustion equipment in revenue-producing service. Dr. Colannino is a registered professional engineer in the State of California and currently Chief Technology Officer for Faber Burner Company. He is also an accomplished musician and artist and recently published an illustrated catechetical translation of the Biblical book of Revelation from the original Greek.
Inhaltsangabe
1. Introduction to Combustion and Equipment. 2. Thermoacoustic Resonance. 3. Combustion Calculations. 4. Heat and Work. 5. Airflow through Burners. 6. Fuel Flow. 7. Introduction to Modeling. 8. Linear Algebra. 9. Least Squares. 10. Important Statistics and Distributions. 11. Orthogonality. 12. Factorial Designs. 13. Preventatives and Diagnostics in Experimental Designs. 14. Second-Order Designs. 15. Mixture Designs for Fuel Blends. 16. Analysis of Non-Ideal Data (Plant and Historical Data). 17. Restrictions on Randomization. 18. Flame Models. 19. Emissions Models. 20. Emissions Reduction. Appendix A. Fuel and Combustion Properties. Appendix B. Mechanical Properties. Appendix C. Units Conversions. Appendix D. Properties of the Elements. Appendix E. Statistical Tables. Appendix F. Some Useful Scales and Nomographs.
1. Introduction to Combustion and Equipment. 2. Thermoacoustic Resonance. 3. Combustion Calculations. 4. Heat and Work. 5. Airflow through Burners. 6. Fuel Flow. 7. Introduction to Modeling. 8. Linear Algebra. 9. Least Squares. 10. Important Statistics and Distributions. 11. Orthogonality. 12. Factorial Designs. 13. Preventatives and Diagnostics in Experimental Designs. 14. Second-Order Designs. 15. Mixture Designs for Fuel Blends. 16. Analysis of Non-Ideal Data (Plant and Historical Data). 17. Restrictions on Randomization. 18. Flame Models. 19. Emissions Models. 20. Emissions Reduction. Appendix A. Fuel and Combustion Properties. Appendix B. Mechanical Properties. Appendix C. Units Conversions. Appendix D. Properties of the Elements. Appendix E. Statistical Tables. Appendix F. Some Useful Scales and Nomographs.
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