Combustion Fire and Computational Modeling of Industrial Combustion Systems

Combustion  Fire  and Computational Modeling of Industrial Combustion Systems
Author: C. Presser,Ashwani K. Gupta
Publsiher: Unknown
Total Pages: 146
Release: 2000
Genre: Mathematics
ISBN: UOM:39015052401034

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The 14 papers in this volume were presented during the November 2000 conference, and primarily discuss developments in combustion modeling of flows associated with industrial reactors. Computation investigations address modeling issues (appropriate numerical schemes, convergence and grid resolution)

Computational Fluid Dynamics in Industrial Combustion

Computational Fluid Dynamics in Industrial Combustion
Author: Jr., Charles E. Baukal,Vladimir Gershtein,Xianming Jimmy Li
Publsiher: CRC Press
Total Pages: 647
Release: 2000-10-26
Genre: Science
ISBN: 9781482274363

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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

Computational Fluid Dynamics in Fire Engineering

Computational Fluid Dynamics in Fire Engineering
Author: Guan Heng Yeoh,Kwok Kit Yuen
Publsiher: Butterworth-Heinemann
Total Pages: 544
Release: 2009-04-20
Genre: Technology & Engineering
ISBN: 0080570038

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Fire and combustion presents a significant engineering challenge to mechanical, civil and dedicated fire engineers, as well as specialists in the process and chemical, safety, buildings and structural fields. We are reminded of the tragic outcomes of ‘untenable’ fire disasters such as at King’s Cross underground station or Switzerland’s St Gotthard tunnel. In these and many other cases, computational fluid dynamics (CFD) is at the forefront of active research into unravelling the probable causes of fires and helping to design structures and systems to ensure that they are less likely in the future. Computational fluid dynamics (CFD) is routinely used as an analysis tool in fire and combustion engineering as it possesses the ability to handle the complex geometries and characteristics of combustion and fire. This book shows engineering students and professionals how to understand and use this powerful tool in the study of combustion processes, and in the engineering of safer or more fire resistant (or conversely, more fire-efficient) structures. No other book is dedicated to computer-based fire dynamics tools and systems. It is supported by a rigorous pedagogy, including worked examples to illustrate the capabilities of different models, an introduction to the essential aspects of fire physics, examination and self-test exercises, fully worked solutions and a suite of accompanying software for use in industry standard modeling systems. · Computational Fluid Dynamics (CFD) is widely used in engineering analysis; this is the only book dedicated to CFD modeling analysis in fire and combustion engineering · Strong pedagogic features mean this book can be used as a text for graduate level mechanical, civil, structural and fire engineering courses, while its coverage of the latest techniques and industry standard software make it an important reference for researchers and professional engineers in the mechanical and structural sectors, and by fire engineers, safety consultants and regulators · Strong author team (CUHK is a recognized centre of excellence in fire eng) deliver an expert package for students and professionals, showing both theory and applications. Accompanied by CFD modeling code and ready to use simulations to run in industry-standard ANSYS-CFX and Fluent software.

Proceedings of the ASME Heat Transfer Division 2002 Heat transfer in energy systems Fire and combustion

Proceedings of the ASME Heat Transfer Division  2002  Heat transfer in energy systems   Fire and combustion
Author: H. S. Cameron
Publsiher: Unknown
Total Pages: 0
Release: 2002
Genre: Heat
ISBN: 0791836347

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Annotation Consists of 47 papers delivered at seven of the sessions on heat transfer held during the November 2002 congress. The authors share recent research on boiling transition, radiation, combustion and fire, and fossil and renewable energy. Multiphase flow in energy systems and computational modeling of industrial combustion systems are also studied. Topics include the characterization of soot from large pool fires, modeling of radiation heat transfer in glass melts, thermal design of supercritical water oxidation reactors, co-firing feedlot and litter biomass, and vegetable oils as fuels for diesel engines. No subject index. Annotation (c)2003 Book News, Inc., Portland, OR (booknews.com).

Computational Modeling of Pulverized Coal Fired Boilers

Computational Modeling of Pulverized Coal Fired Boilers
Author: Vivek V. Ranade,Devkumar F. Gupta
Publsiher: CRC Press
Total Pages: 271
Release: 2014-12-02
Genre: Science
ISBN: 9781482215359

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Harness State-of-the-Art Computational Modeling Tools Computational Modeling of Pulverized Coal Fired Boilers successfully establishes the use of computational modeling as an effective means to simulate and enhance boiler performance. This text factors in how computational flow models can provide a framework for developing a greater understanding of the underlying processes in PC boilers. It also provides a detailed account of the methodology of computational modeling of pulverized coal boilers, as well as an apt approach to modeling complex processes occurring in PC boilers in a manageable way. Connects Modeling with Real-Life Applications Restricted to the combustion side of the boiler (the authors assume some prior background of reaction engineering and numerical techniques), the book describes the individual aspects of combustion and heat recovery sections of PC boilers that can be used to further improve the design methodologies, optimize boiler performance, and solve practical boiler-related problems. The book provides guidelines on implementing the material in commercial CFD solvers, summarizes key points, and presents relevant case studies. It can also be used to model larger boilers based on conventional, super-critical, or ultra-super critical technologies as well as based on oxy-fuel technologies. Consisting of six chapters, this functional text: Provides a general introduction Explains the overall approach and methodology Explores kinetics of coal pyrolysis (devolatilization) and combustion and methods of its evaluation Presents computational flow modeling approach to simulate pulverized coal fired boiler Covers modeling aspects from formulation of model equations to simulation methodology Determines typical results obtained with computational flow models Discusses the phenomenological models or reactor network models Includes practical applications of computational modeling Computational Modeling of Pulverized Coal Fired Boilers explores the potential of computational models for better engineering of pulverized coal boilers, providing an ideal resource for practicing engineers working in utility industries. It also benefits boiler design companies, industrial consultants, R & D laboratories, and engineering scientists/research students.

Heat Transfer in Industrial Combustion

Heat Transfer in Industrial Combustion
Author: Jr Baukal
Publsiher: CRC Press
Total Pages: 568
Release: 2019-08-30
Genre: Electronic Book
ISBN: 0367398591

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Industry relies heavily on the combustion process. The already high demand for energy, primarily from combustion, is expected to continue to rapidly increase. Yet, the information is scattered and incomplete, with very little attention paid to the overall combustion system. Designed for practicing engineers, Heat Transfer in Industrial Combustion eclipses the extant literature with an emphasis on the aspects of heat transfer that directly apply to industry. From a practical point of view, the editor organizes relevant papers into a single, coherent resource. The book encompasses heat transfer, thermodynamics, and fluid mechanics, including the little-covered subjects of the use of oxygen to enhance combustion and flame impingement. Maximizing applications and minimizing theory, it covers modes of heat transfer, computer modeling, heat transfer from flame impingement, from burners, low temperature, high temperature, and advanced applications, and more. The theoretical focus of most literature has created a clear need for a practical treatment of the heat transfer as it applies to industrial combustion systems. With detailed coverage and extensive references, Heat Transfer in Industrial Combustion fills this void. Features

Heat Transfer in Industrial Combustion

Heat Transfer in Industrial Combustion
Author: Jr., Charles E. Baukal
Publsiher: CRC Press
Total Pages: 568
Release: 2000-05-26
Genre: Science
ISBN: 9781420039757

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Industry relies heavily on the combustion process. The already high demand for energy, primarily from combustion, is expected to continue to rapidly increase. Yet, the information is scattered and incomplete, with very little attention paid to the overall combustion system. Designed for practicing engineers, Heat Transfer in Industrial Combustion e

Industrial Combustion Pollution and Control

Industrial Combustion Pollution and Control
Author: Jr., Charles E. Baukal
Publsiher: CRC Press
Total Pages: 920
Release: 2003-10-15
Genre: Nature
ISBN: 0203912780

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This reference overflows with an abundance of experimental techniques, simulation strategies, and practical applications useful in the control of pollutants generated by combustion processes in the metals, minerals, chemical, petrochemical, waste, incineration, paper, glass, and foods industries. The book assists engineers as they attempt to meet e