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HERO ID
2377361
Reference Type
Journal Article
Title
From combustion and detonation to nitrogen oxides
Author(s)
Ivanov, MF; Kiverin, AD; Klumov, BA; Fortov, VE
Year
2014
Is Peer Reviewed?
1
Journal
Physics - Uspekhi
ISSN:
1063-7869
Volume
57
Issue
3
Page Numbers
234-249
DOI
10.3367/UFNr.0184.201403c.0247
Web of Science Id
WOS:000337360600003
Abstract
This paper looks at Ya B Zeldovich's ideas on the combustion and detonation physics of gaseous mixtures and how they evolved as work in this field progressed. The paper demonstrates the fundamental role of Zeldovich's concept of spontaneous combustion waves in studying transient initiation processes for various combustion regimes and in determining the energy and concentration inflammation limits for combustible gaseous mixtures. It shows how his notion that flame front stretching crucially influences flame acceleration in channels explains in a new way the deflagration-to-detonation transition in highly reactive gaseous mixtures. Most of the presented results were obtained by simulations, allowing Zeldovich's ideas to be extended to the combustion of real gaseous mixtures, where chemical reactions and gasdynamical flows add hugely to the complexity of the problem. The paper concludes by using Zeldovich's mechanism to assess the amount of nitrogen oxide produced by a lightning discharge.
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