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Thursday, November 19, 2020 | History

4 edition of Reduced kinetic mechanisms and asymptotic approximations for methane-air flames found in the catalog.

Reduced kinetic mechanisms and asymptotic approximations for methane-air flames

a topical volume

by

  • 250 Want to read
  • 27 Currently reading

Published by Springer-Verlag in Berlin, New York .
Written in English

    Subjects:
  • Combustion -- Mathematical models.,
  • Chemical reaction, Conditions and laws of -- Mathematical models.

  • Edition Notes

    Includes bibliographical references and index.

    Other titlesMethane-air flames.
    StatementMitchell D. Smooke, ed. ; with contributions by R.W. Bilger ... [et al.].
    SeriesLecture notes in physics ;, 384
    ContributionsSmooke, Mitchell D., 1951-, Bilger, R. W.
    Classifications
    LC ClassificationsQD516 .R432 1991
    The Physical Object
    Paginationiv, 245 p. :
    Number of Pages245
    ID Numbers
    Open LibraryOL1538306M
    ISBN 103540542108, 0387542108
    LC Control Number91016706

    Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames Author: Mitchell D. Smooke (Editor), R.W. Bilger (Contributor), H.K. Chelliah (Contributor).


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Reduced kinetic mechanisms and asymptotic approximations for methane-air flames Download PDF EPUB FB2

The results of applying the reduced reaction mechanism to a one-dimensional laminar flame are discussed. A set of premixed and non-premixed methane-air flames with simplified transport and skeletal chemistry are employed as test problems that are used later on to evaluate the results and assumptions in reduced reaction networks.

Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames A Topical Volume. Editors: Smooke, Mitchell D. (Ed.) Free Preview. Buy this book eB28 € price for Spain (gross) The eBook version of this title will be available soon; ISBN Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames: A Topical Volume (Lecture Notes in Physics) (Lecture Notes in Physics Format: Paperback.

Reducing mechanisms.- Overview of asymptotics for methane flames.- On reduced mechanisms for methane-air combustion.- Structure of the oxidation layer for stoichiometric and lean methane-air flames.- Asymptotic analysis of methane-air diffusion flames.- Sensitivity analysis of laminar premixed CH4-air flames using full and reduced kinetic.

Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames: A Topical Volume Smooke, Mitchell D. Abstract. Not Available. Publication: Reduced Kinetic Reduced kinetic mechanisms and asymptotic approximations for methane-air flames book and Asymptotic Approximations for Methane-Air Flames.

Pub Date: DOI: /BFb Cited by: S. Lam and D. Goussis, “Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air flames,” In: M. Smooke, Ed., Springer Lecture Notes The idea there was to use a relatively short kinetic mechanism containing only 25 reactions of the C 1-chain, and to analyse not only different approximations for reduced mechanisms of methane-air flames, but asymptotic formulations as by: Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames A Topical Volume (Lecture Notes in Computer Science) by Mitchell D.

Smooke. Published January by Springer. Written in English. In book: Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames, pp the flame velocity of a stoichiometric methane-air flame is calculated as cm/sec. The Author: Norbert Peters.

Reduced kinetic mechanisms and asymptotic approximations for methane-air flames. Berlin ; New York: Springer-Verlag, © (OCoLC) Material Type: Internet resource: Document Type: Book, Internet Resource: All Authors / Contributors: Mitchell D Smooke; R W Bilger.

On reduced mechanisms for methane-air combustion. It can be concluded that formally reduced four-step mechanisms give excellent models for the complex kinetics of methane-air combustion in a wide range of premixed and diffusion flames. Previous asymptotic analyses of near stoichiometric, lean, and moderately rich methane flames were carried out employing reduced chemical-kinetic mechanisms derived from the C 1-mechanism.

For rich flames analyzed here, the elementary reaction CH 3 + CH 3 = C 2 H 6, that leads to the C 2 -chain, is found to be the principal step by which CH 3 Cited by: Seshadri K., Göttgens d Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames M.D.

Smooke (Ed.), Lecture Notes in Physics,Springer, Berlin (), p. Cited by:   Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames: A Topical Volume (Lecture Notes in Physics) by R.W. Bilger, H.K. Chelliah, et al. | 23 August Paperback Currently unavailable.

Hardcover Currently unavailable. The Tragic Story Of Partition. Get this from a library. Reduced kinetic mechanisms and asymptotic approximations for methane-air flames: a topical volume. [Mitchell D Smooke; R W Bilger;] -- In this comprehensive text a systematic numerical and analytical treatment of the procedures for reducing complicated systems to a simplified reaction mechanism is presented.

The results of applying. Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane‐Air Flames, Topical Volume, Vol.

aus der Reihe: Lecture Notes in Physics, Springer‐Verlag, Berlin, ISBN 3‐‐‐8,Seiten, Preis: DM 59,‐.Author: Jürgen Warnatz. Reduced kinetic mechanisms and asymptotic approximations for methane-air flames: a topical volume. Responsibility The authors provide a presentation of the reduction mechanism for complex chemical reactions and for complicated transport phenomena applied to laminar flames.

Publications in Journals: "Asymptotic analysis of a TMDD model: when a reaction contributes to the destruction of its products", L.I. Michalaki and D.A. Goussis, Journal of Mathematical Biology, in press, "Issues arising in the construction of QSSA mechanisms: the case of reduced n-heptane/air models for premixed flames", Tingas, D.J.

Diamantis and D.A. Goussis, Combustion Theory. Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames的话题 (全部 条) 什么是话题 无论是一部作品、一个人,还是一件事,都往往可以衍生出许多不同的话题。.

Reduced Mechanisms for Prediction of NO 2 Formation and Ignition Delay in Methane-Air Combustion R. Homma. Homma. “Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames,” Lecture Notes in Physics,Springer-Verlag, pp.

1–Cited by: 9. Abstract. Publication: Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames. Pub Date: DOI: /BFb Bibcode. Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames: A Topical Volume By Mitchell D Smooke No static citation data No static citation data CiteAuthor: Mitchell D Smooke.

Asymptotic Structure of Rich Methane-Air Flames K. SESHADRI* The asymptotic structure of unstrained, laminar, fuel-rich, premixed methane flame is analyzed by using a reduced chemical-kinetic mechanism made up of three global steps.

Analysis is carried out for values of equivalence ratio greater than The flame structure is presumed. Lam and D. Goussis, “Conventional asymptotics and computational singular perturbation for simplified kinetics modelling,” in Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames, Lecture Notes in Physics, edited by M.

Smoke Cited by: 1. Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames, Lecture Notes in Physics, Volume ISBN Springer-Verlag,p.

Smooke, in Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane–Air Flames (Springer-Verlag, Berlin, ). Google Scholar; 5.

Wangand M. Frenklach, “ Detailed reduction of reaction mechanisms for flame modeling,” Combust. Fl – (). Google Scholar Crossref; 6. by: 1. Asymptotic Analysis of the Structure of Moderately Rich Methane-Air Flames K. SESHADRI,* X. BAI,** H. PITSCH, and N. PETERS Institut fu¨r Technische Mechanik, RWTH Aachen, D Aachen, Federal Republic of Germany The asymptotic structure of laminar, moderately rich, premixed methane flames is analyzed using a reduced chemical-kinetic.

The asymptotic structure of unstrained, laminar, fuel-rich, premixed methane flame is analyzed by using a reduced chemical-kinetic mechanism made up of three global steps. Analysis is carried out for values of equivalence ratio greater than The flame structure is presumed to comprise three zones: an inert preheat zone, a thin reaction zone, and a post-flame zone.

Two reduced reaction mechanisms were established that predict reliably for pressures up to about 20 bar the heat release for different syngas mixtures including initial concentrations of methane. The mechanisms were validated on the base of laminar flame speed data covering a wide range of preheat temperature, pressure, and fuel-air by: Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane Air Flam Reduced Kinetic Mechanisms Kinetic and Mechanisms Reduced Asymptotic Flames: Methane for Approximations air air Approximations for Kinetic Asymptotic Flames: and Methane Reduced Mechanisms: $ Reduced mechanisms lessen computational cost and possess the ability to accurately predict the overall flame structure, including gas temperature and species as CH 4, CO and NO x.

The S-STEP algorithm which based on computational singular perturbation method (CSP) is performed for reduced the detailed mechanism GRI Peters four-step chemistry is a systematically reduced mechanism for methane combustion, named after Norbert Peters, who derived it in The mechanism predicted four different regimes where each reaction takes place.

The third reaction, known as radical consumption layer, where most of the heat. A four-step mechanism for the combustion of methane in air in nonpremixed flames is obtained by making steady-state and partial equilibrium approximations for minor species. The model gives good predictions of laminar flame structure, including steady-state minor species, for a wide range of flame.

Discover Book Depository's huge selection of R W Bilger books online. Free delivery worldwide on over 20 million titles. We use cookies to give you the best possible experience. Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-air Flames.

Mitchell D. Smooke. 05 Aug Hardback. unavailable. Reduced Kinetic Mechanisms for Premixed Methane-Air Flames (Eds. Reducing Mechanisms., In Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames (Ed. Seventeenth Symposium (International) on : Ka Chun Kwan. Chen, J. and R.

Dibble, "Applications of Reduced Chemical Mechanisms for the Prediction of Turbulent Nonpremixed Methane Jet Flames," In Reduced Chemical Mechanisms and Asymptotic Approximations for Methane-Air Flames, M.

Smooke, Ed., Springer-Verlag, New York, Vol. pp. R.W. Bilger is the author of Turbulent Reacting Flows ( avg rating, 0 ratings, 0 reviews, published ), Reduced Kinetic Mechanisms And Asymptotic A.

(5) Reduced kinetic mechanisms and asymptotic approximations for methane-air flames: a topical volume / Edited by Mitchell D.

Smooke, Berlin ; New York: Springer-Verlag, Lecture notes in physics ;(6) Turbulent Reacting Flows Edited by P. Turbulent combustion regimes for hypersonic propulsion employing hydrogen-air diffusion flames. Reduced chemical mechanism for primary flame facilitating simplified asymptotic analysis.

Large Eddy Simulation of Ignition and Combustion of Ethylene/Air Turbulent Jet Diffusion Flame with Reduced Kinetic by: The asymptotic structures of methane-air flames, for equivalence ratios from to and pressures from 1 to 70 arm, are analyzed on the basis of a reduced four-step chemical-kinetic mechanism that has previously predicted burning velocities with reasonable accuracy.

J.-Y. Chen and R.W. Dibble, "Application of Reduced Mechanisms for Prediction of Turbulent Nonpremixed Methane Jet Flames," in Lecture Notes in Physics "Reduced Kinetic Mechanisms and Asymptotic Approximations for Methane-Air Flames" Edited .Reduced kinetic mechanisms and asymptotic approximations for methane-air flames: a topical volume.

MD Smooke Computational and experimental study of axisymmetric coflow partially premixed methane/air flames. BAV Bennett, CS McEnally, LD Pfefferle, MD Smooke Toward a comprehensive chemical kinetic mechanism for the oxidation of acetylene.Their combined citations are counted only for the first article.

Reduced kinetic mechanisms and asymptotic approximations for methane-air flames: a topical volume. MD Smooke. Springer-Verlag, Reduced kinetic mechanisms and asymptotic approximations for methane-air.