Combustion Optimization Based on Computational Intelligence

Combustion Optimization Based on Computational Intelligence
Author: Hao Zhou
Publisher: Springer
Total Pages: 291
Release: 2018-02-02
Genre: Technology & Engineering
ISBN: 9811078750

This book presents the latest findings on the subject of combustion optimization based on computational intelligence. It covers a broad range of topics, including the modeling of coal combustion characteristics based on artificial neural networks and support vector machines. It also describes the optimization of combustion parameters using genetic algorithms or ant colony algorithms, an online coal optimization system, etc. Accordingly, the book offers a unique guide for researchers in the areas of combustion optimization, NOx emission control, energy and power engineering, and chemical engineering.

Combustion Engineering Issues for Solid Fuel Systems

Combustion Engineering Issues for Solid Fuel Systems
Author: Bruce G. Miller
Publisher: Academic Press
Total Pages: 521
Release: 2008-07-02
Genre: Technology & Engineering
ISBN: 0080558054

Design, construct and utilize fuel systems using this comprehensive reference work. Combustion Engineering Issues for Solid Fuel Systems combines modeling, policy/regulation and fuel properties with cutting edge breakthroughs in solid fuel combustion for electricity generation and industrial applications. This book moves beyond theory to provide readers with real-life experiences and tips for addressing the various technical, operational and regulatory issues that are associated with the use of fuels. With the latest information on CFD modeling and emission control technologies, Combustion Engineering Issues for Solid Fuel Systems is the book practicing engineers as well as managers and policy makers have been waiting for. Provides the latest information on CFD modeling and emission control technologies Comprehensive coverage of combustion systems and fuel types Addresses policy and regulatory concerns at a technical level Tackles various technical and operational issues

Modeling of Combustion Systems

Modeling of Combustion Systems
Author: Joseph Colannino
Publisher: CRC Press
Total Pages: 675
Release: 2006-03-24
Genre: Science
ISBN: 1420005030

Increasing competitive pressure for improved quality and efficiency on one hand and tightening emissions and operating requirements on the other leave the modern process engineer squeezed in the middle. While effective modeling can help balance these demands, the current literature offers overly theoretical treatments on modeling that do not transl

Combustion and Emissions Control II

Combustion and Emissions Control II
Author: Institute of Energy
Publisher: Pergamon
Total Pages: 414
Release: 1996-04-09
Genre: Science
ISBN:

Combustion and Emissions Control II contains 37 papers presented at the Institute of Energy Second International Conference on Combustion and Emissions Control held in London, UK, 4-5 December 1995. Combustion and Emissions Control II features contributions on both fundamental and applied aspects of the science and technology of combustion and emissions control. Topics covered include emissions control and clean-up, energy from waste and biofuels, modelling for industry, plant performance, industrial burners and furnaces, advanced power generation, internal combustion engines. Presenting some of the latest developments in the field, Combustion and Emissions Control II is an invaluable reference tool on a subject of great environmental concern. Published by The Institute of Energy and distributed by Elsevier Science.

Fundamentals and Technology of Combustion

Fundamentals and Technology of Combustion
Author: F El-Mahallawy
Publisher: Elsevier
Total Pages: 863
Release: 2002-07-10
Genre: Science
ISBN: 0080532187

Fundamentals and Technology of Combustion contains brief descriptions of combustion fundamental processes, followed by an extensive survey of the combustion research technology. It also includes mathematical combustion modeling of the processes covering mainly premixed and diffusion flames, where many chemical and physical processes compete in complex ways, for both laminar and turbulent flows. The combustion chemistry models that validate experimental data for different fuels are sufficiently accurate to allow confident predictions of the flame characteristics. This illustrates a unique bridge between combustion fundamentals and combustion technology, which provides a valuable technical reference for many engineers and scientists. Moreover, the book gives the reader sufficient background of basic engineering sciences such as chemistry, thermodynamics, heat transfer and fluid mechanics. The combustion research and mathematical models fit between small-scale laboratory burner flames, and large-scale industrial boilers, furnaces and combustion chambers. The materials have been collected from previous relevant research and some selected papers of the authors and co-workers, which have been presented mainly in different refereed journals, international conferences and symposia, thus providing a comprehensive collection. Furthermore, the book includes some of the many recent general correlations for the characteristics of laminar, turbulent, premixed and diffusion flames in an easily usable form. The authors believe that further progress in optimizing combustion performance and reducing polluting emissions can only be treated through understanding of combustion chemistry.

Boilers and Burners

Boilers and Burners
Author: Prabir Basu
Publisher: Springer Science & Business Media
Total Pages: 579
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 1461212502

A joint effort of three continents, this book is about rational utilization of the fossil fuels for generation of heat or power. It provides a synthesis of two scientific traditions: the high-performance, but often proprietary, Western designs, and the elaborate national standards based on less advanced Eastern designs; it presents both in the same Western format. It is intended for engineers and advanced undergraduate and graduate students with an interest in steam power plants, burners, or furnaces. The text uses a format of practice based on theory: each chapter begins with an explanation of a process, with basic theory developed from first principles; then empirical relationships are presented and, finally, design methods are explained by worked out examples. It will thus provide researchers with a resource for applications of theory to practice. Plant operators will find solutions to and explanations of many of their daily operational problems. Designers will find this book ready with required data, design methods and equations. Finally, consultants will find it very useful for design evaluation.

Turbulent Combustion Modeling

Turbulent Combustion Modeling
Author: Tarek Echekki
Publisher: Springer Science & Business Media
Total Pages: 496
Release: 2010-12-25
Genre: Technology & Engineering
ISBN: 9400704127

Turbulent combustion sits at the interface of two important nonlinear, multiscale phenomena: chemistry and turbulence. Its study is extremely timely in view of the need to develop new combustion technologies in order to address challenges associated with climate change, energy source uncertainty, and air pollution. Despite the fact that modeling of turbulent combustion is a subject that has been researched for a number of years, its complexity implies that key issues are still eluding, and a theoretical description that is accurate enough to make turbulent combustion models rigorous and quantitative for industrial use is still lacking. In this book, prominent experts review most of the available approaches in modeling turbulent combustion, with particular focus on the exploding increase in computational resources that has allowed the simulation of increasingly detailed phenomena. The relevant algorithms are presented, the theoretical methods are explained, and various application examples are given. The book is intended for a relatively broad audience, including seasoned researchers and graduate students in engineering, applied mathematics and computational science, engine designers and computational fluid dynamics (CFD) practitioners, scientists at funding agencies, and anyone wishing to understand the state-of-the-art and the future directions of this scientifically challenging and practically important field.