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Diffraction of Combustion Waves in a Two-Dimensional Channel. Part II Full article

Journal Combustion, Explosion and Shock Waves
ISSN: 0010-5082
Output data Year: 2026, Volume: 62, Number: 2, Pages: 205-214 Pages count : 10 DOI: 10.1134/s0010508226700024
Tags spark ignition, critical ignition energy, laminar and turbulent combustion, normal flame speed, characteristic combustion instabilities, deflagration-to-detonation transition, flame diffraction, rarefaction waves
Authors Vasil’ev A.A. 1,2 , Boriskin A.A. 1 , Vasil’ev V.A. 1
Affiliations
1 Lavrentyev Institute of Hydrodynamics, Siberian Branch, Russian Academy of Sciences, 630090, Novosibirsk, Russia
2 Novosibirsk State University, Novosibirsk, Russia

Abstract: Despite numerous studies, many aspects of the ignition and propagation of combustion and detonation waves in combustible mixtures remain insufficiently studied, which complicates the scientifically based control of these processes. The first part of this work presented new experimental data on the various stages of ignition and on flame front propagation in a flat (two-dimensional) channel of constant cross section. This paper presents the results of the little-studied area of combustion wave behavior in a channel with varying geometric dimensions (so-called flame diffraction). The characteristic processes involved in the behavior of a turbulent flame propagating from a narrow to a wide channel have been established: from flameout and the disappearance of the front glow with incomplete combustion of the mixture in the wide channel to the occurrence of new explosive microcenters due to the development of instabilities of the expanding flame and collisions of turbulent flame tongues, leading to the formation of detonation-like waves.
Cite: Vasil’ev A.A. , Boriskin A.A. , Vasil’ev V.A.
Diffraction of Combustion Waves in a Two-Dimensional Channel. Part II
Combustion, Explosion and Shock Waves. 2026. V.62. N2. P.205-214. DOI: 10.1134/s0010508226700024 OpenAlex
Dates:
Submitted: Oct 21, 2024
Accepted: Nov 27, 2024
Published print: May 5, 2026
Identifiers:
≡ OpenAlex: W7160261318
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