Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels

Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels
Title Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels PDF eBook
Author
Publisher
Pages
Release 1999
Genre
ISBN

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Using CARM (Computer Aided Reduction Method), a computer program that automates the mechanism reduction process, a variety of different reduced chemical kinetic mechanisms for ethylene and n-heptane have been generated. The reduced mechanisms have been compared to detailed chemistry calculations in simple homogeneous reactors and experiments. Reduced mechanisms for combustion of ethylene having as few as 10 species were found to give reasonable agreement with detailed chemistry over a range of stoichiometries and showed significant improvement over currently used global mechanisms. The performance of reduced mechanisms derived from a large detailed mechanism for n-heptane was compared to results from a reduced mechanism derived from a smaller semi-empirical mechanism. The semi-empirical mechanism was advantageous as a starting point for reduction for ignition delay, but not for PSR calculations. Reduced mechanisms with as few as 12 species gave excellent results for n-heptane/air PSR calculations but 16-25 or more species are needed to simulate n-heptane ignition delay.

Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels

Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels
Title Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels PDF eBook
Author
Publisher
Pages 12
Release 1999
Genre
ISBN

Download Reduced Chemical Kinetic Mechanisms for Hydrocarbon Fuels Book in PDF, Epub and Kindle

Using CARM (Computer Aided Reduction Method), a computer program that automates the mechanism reduction process, a variety of different reduced chemical kinetic mechanisms for ethylene and n-heptane have been generated. The reduced mechanisms have been compared to detailed chemistry calculations in simple homogeneous reactors and experiments. Reduced mechanisms for combustion of ethylene having as few as 10 species were found to give reasonable agreement with detailed chemistry over a range of stoichiometries and showed significant improvement over currently used global mechanisms. The performance of reduced mechanisms derived from a large detailed mechanism for n-heptane was compared to results from a reduced mechanism derived from a smaller semi-empirical mechanism. The semi-empirical mechanism was advantageous as a starting point for reduction for ignition delay but not for PSR calculations. Reduced mechanisms with as few as 12 species gave excellent results for n-heptane/air PSR calculations but 16-25 or more species are needed to simulate n-heptane ignition delay.

Reduced Chemical Kinetic Reaction Mechanisms for Hydrocarbon Fuels

Reduced Chemical Kinetic Reaction Mechanisms for Hydrocarbon Fuels
Title Reduced Chemical Kinetic Reaction Mechanisms for Hydrocarbon Fuels PDF eBook
Author J. M. MORRISSEY
Publisher
Pages 214
Release 1995
Genre
ISBN

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Reduced Chemical Kinetic Reaction Mechanisms for Hydrocarbon Fuels

Reduced Chemical Kinetic Reaction Mechanisms for Hydrocarbon Fuels
Title Reduced Chemical Kinetic Reaction Mechanisms for Hydrocarbon Fuels PDF eBook
Author J. M. MORRISSEY
Publisher
Pages 214
Release 1995
Genre
ISBN

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Low-temperature Combustion and Autoignition

Low-temperature Combustion and Autoignition
Title Low-temperature Combustion and Autoignition PDF eBook
Author M.J. Pilling
Publisher Elsevier
Pages 823
Release 1997-11-27
Genre Science
ISBN 0080535658

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Combustion has played a central role in the development of our civilization which it maintains today as its predominant source of energy. The aim of this book is to provide an understanding of both fundamental and applied aspects of low-temperature combustion chemistry and autoignition. The topic is rooted in classical observational science and has grown, through an increasing understanding of the linkage of the phenomenology to coupled chemical reactions, to quite profound advances in the chemical kinetics of both complex and elementary reactions. The driving force has been both the intrinsic interest of an old and intriguing phenomenon and the centrality of its applications to our economic prosperity. The volume provides a coherent view of the subject while, at the same time, each chapter is self-contained.

Soot Formation in Combustion

Soot Formation in Combustion
Title Soot Formation in Combustion PDF eBook
Author Henning Bockhorn
Publisher Springer Science & Business Media
Pages 595
Release 2013-03-08
Genre Science
ISBN 3642851673

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Soot Formation in Combustion represents an up-to-date overview. The contributions trace back to the 1991 Heidelberg symposium entitled "Mechanism and Models of Soot Formation" and have all been reedited by Prof. Bockhorn in close contact with the original authors. The book gives an easy introduction to the field for newcomers, and provides detailed treatments for the specialists. The following list of contents illustrates the topics under review:

Development of Reduced Chemical Kinetics for Combustion Simulations with Transportation Fuels

Development of Reduced Chemical Kinetics for Combustion Simulations with Transportation Fuels
Title Development of Reduced Chemical Kinetics for Combustion Simulations with Transportation Fuels PDF eBook
Author Zhaoyu Luo
Publisher
Pages 344
Release 2013
Genre
ISBN

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