Authors:
- Presents contemporary problems on combustion
- Discusses modern methods of chemical supression of combution of gases and powder gas mixtures
- Focuses on the virtually inaccessible works of Russian authors
- Includes supplementary material: sn.pub/extras
Part of the book series: Heat and Mass Transfer (HMT)
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Table of contents (10 chapters)
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Front Matter
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Propagation of Laminar Spherical Flames
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Front Matter
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Unsteady Gaseous Combustion
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Front Matter
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Critical Phenomena in Supersonic Combustion
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Front Matter
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Role of Disperse Phase in Combustion Processes
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Front Matter
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About this book
This book provides an analysis of contemporary problems in combustion science, namely flame propagation, detonation and heterophaseous combustion based on the works of the author. The current problems in the area of gas combustion, as well as the methods allowing to calculate and estimate limiting conditions of ignition, and flame propagation on the basis of experimental results are considered. The book focuses on the virtually inaccessible works of Russian authors and will be useful for experienced students and qualified scientists in the area of experimental studies of combustion processes.
Authors and Affiliations
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Russian Academy of Sciences, Inst Structural Macrokinetics & Mat Scie, Moscow, Russia
Nickolai M. Rubtsov
Bibliographic Information
Book Title: The Modes of Gaseous Combustion
Authors: Nickolai M. Rubtsov
Series Title: Heat and Mass Transfer
DOI: https://doi.org/10.1007/978-3-319-25933-8
Publisher: Springer Cham
eBook Packages: Engineering, Engineering (R0)
Copyright Information: Springer International Publishing Switzerland 2016
Hardcover ISBN: 978-3-319-25932-1Published: 03 December 2015
Softcover ISBN: 978-3-319-79861-5Published: 27 March 2019
eBook ISBN: 978-3-319-25933-8Published: 25 November 2015
Series ISSN: 1860-4846
Series E-ISSN: 1860-4854
Edition Number: 1
Number of Pages: XXII, 297
Number of Illustrations: 127 illustrations in colour
Topics: Engineering Thermodynamics, Heat and Mass Transfer, Engineering Fluid Dynamics, Physical Chemistry