Computational fluid dynamics in industrial combustion /

Although many books have been written on computational fluid dynamics (CFD) and many written on combustion, most contain very limited coverage of the combination of CFD and industrial combustion. Furthermore, most of these books are written at an advanced academic level, emphasize theory over practi...

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Bibliographic Details
Corporate Author: Taylor and Francis
Other Authors: Baukal, Jr., Charles E. (Editor), Gershtein, Vladimir Y. (Editor), Li, Xianming Jimmy (Editor)
Format: Electronic eBook
Language:English
Published: Boca Raton, FL : CRC Press, an imprint of Taylor and Francis, [2000]
Edition:First edition.
Series:Industrial Combustion.
Subjects:
Online Access: Full text (WIT users only)

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245 0 0 |a Computational fluid dynamics in industrial combustion /  |c edited by Charles E. Baukal, Jr., Vladimir Gershtein and Xianming Jimmy Li. 
250 |a First edition. 
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300 |a 1 online resource (648 pages) :  |b 215 illustrations. 
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490 1 |a Industrial Combustion 
505 0 0 |t part SECTION I: MODELING TECHNIQUES --   |t chapter 1 Introduction /  |r Charles E. Baukal, Jr --   |t chapter 2 CFD Modeling /  |r Charles E. Baukal, Jr --   |t chapter 3 Unstructured Mesh Methods for Combustion Problems /  |r Jayathi Y Murthy --   |t chapter 4 PCGC-3 /  |r Scott C. Hill --   |t chapter 5 Local Integral Moment (LIM) Simulations /  |r Werner J. A. Dahm --   |t chapter 6 Modeling Coflow Diffusion Flames with Local Mesh Refinement /  |r Mitchell D. Smooke and Beth Anne V Bennett --   |t part SECTION II: INDUSTRIAL APPLICATIONS --   |t chapter 7 CFD in Burner Development /  |r Vladimir Y Gershtein and Charles E. Baukal, Jr --   |t chapter 8 CFD Modeling for the Steel Industry /  |r Xianming Li --   |t chapter 9 Aluminum Industry /  |r Vladimir Y Gershtein and Charles E. Baukal, Jr --   |t chapter 10 CFD Modeling for the Glass Industry /  |r Bryan C. Hoke, Jr and Petr Schill --   |t chapter 11 Modeling Impinging Flame Jets /  |r Charles E. Baukal, Jr --   |t chapter 12 Gas Turbines /  |r D. Scott Crocker --   |t chapter 13 CFD Modeling in the Petrochemical Industry --   |t part SECTION III: ADVANCED TECHNIQUES --   |t chapter 14 Design Optimization /  |r Richard W Johnson --   |t chapter 15 Virtual Reality Simulations /  |r Lori Freitag. 
520 3 |a Although many books have been written on computational fluid dynamics (CFD) and many written on combustion, most contain very limited coverage of the combination of CFD and industrial combustion. Furthermore, most of these books are written at an advanced academic level, emphasize theory over practice, and provide little help to engineers who need to use CFD for combustion modeling.Computational Fluid Dynamics in Industrial Combustion fills this gap in the literature. Focusing on topics of interest to the practicing engineer, it codifies the many relevant books, papers, and reports written on this combined subject into a single, coherent reference. It looks at each topic from a somewhat narrow perspective to see how that topic affects modeling in industrial combustion. The editor and his team of expert authors address these topics within three main sections: Modeling Techniques-The basics of CFD modeling in combustionIndustrial Applications-Specific applications of CFD in the steel, aluminum, glass, gas turbine, and petrochemical industriesAdvanced Techniques-Subjects rarely addressed in other texts, including design optimization, simulation, and visualizationRapid increases in computing power and significant advances in commercial CFD codes have led to a tremendous increase in the application of CFD to industrial combustion. Thorough and clearly representing the techniques and issues confronted in industry, Computational Fluid Dynamics in Industrial Combustion will help bring you quickly up to date on current methods and gain the ability to set up and solve the various types of problems you will encounter. 
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