Fast combustion waves and chemi-ionization processes in a flame initiated by a powerful local plasma source in a closed reactor
Author(s) -
К. В. Артемьев,
N. K. Berezhetskaya,
S Yu Kazantsev,
N. G. Koov,
И. А. Коссый,
Н. А. Попов,
Н. М. Тарасова,
Е. А. Филимонова,
K N Firsov
Publication year - 2015
Publication title -
philosophical transactions of the royal society a mathematical physical and engineering sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.074
H-Index - 169
eISSN - 1471-2962
pISSN - 1364-503X
DOI - 10.1098/rsta.2014.0334
Subject(s) - ignition system , ionization , combustion , plasma , materials science , atomic physics , laser ignition , methane , laser , analytical chemistry (journal) , mechanics , chemistry , thermodynamics , ion , optics , physics , organic chemistry , chromatography , quantum mechanics
Results are presented from experimental studies of the initiation of combustion in a stoichiometric methane–oxygen mixture by a freely localized laser spark and by a high-current multispark discharge in a closed chamber. It is shown that, preceding the stage of ‘explosive’ inflammation of a gas mixture, there appear two luminous objects moving away from the initiator along an axis: a relatively fast and uniform wave of ‘incomplete combustion’ under laser spark ignition and a wave with a brightly glowing plasmoid behind under ignition from high-current slipping surface discharge. The gas mixtures in both the ‘preflame’ and developed-flame states are characterized by a high degree of ionization as the result of chemical ionization (plasma densityn e ≈1012 cm−3 ) and a high frequency of electron–neutral collisions (ν en ≈1012 s−1 ). The role of chemical ionization in constructing an adequate theory for the ignition of a gas mixture is discussed. The feasibility of the microwave heating of both the preflame and developed-flame plasma, supplementary to a chemical energy source, is also discussed.
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