Chain nature of the combustion, explosion, and detonation of gases: New aspects of theory View Full Text


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Article Info

DATE

2015-11

AUTHORS

V. V. Azatyan

ABSTRACT

It is shown that contrary to previous concepts, the gas-phase processes of combustion occur via branched-chain mechanisms not only at extremely low pressures with no change in temperature, but at atmospheric and elevated pressures in any temperature mode. Based on the theory of nonisothermic chain processes, an explanation of the ignition, flame propagation, explosion, and detonation of gases is obtained experimentally in ranges of pressure and temperature important to engineering. Chemical methods for controlling the above modes of combustion are developed. More... »

PAGES

1997-2005

References to SciGraph publications

  • 2005-11. Inhibition of the Combustion and Detonation of Hydrogen-Air Mixtures behind the Shock Front in KINETICS AND CATALYSIS
  • 2013-09. Breakup of steady-state detonation in hydrogen-air mixtures under the action of propane admixtures in KINETICS AND CATALYSIS
  • 2006-07. The role played by chain avalanches in the developed burning of hydrogen mixtures with oxygen and air at atmospheric pressure in RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A
  • 2014-05. Problems of combustion, explosion, and gas detonation in the theory of nonisothermal chain processes in RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A
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  • 1985. The Mathematical Theory of Combustion and Explosions in NONE
  • 2015-01. Role of the chemical mechanism in the temperature dependence of the rate of gas combustion reactions in KINETICS AND CATALYSIS
  • 2011-09. Control of the deflagration-to-detonation transition in systems with resistance in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1927-11. Die Oxydation des Phosphordampfes bei niedrigen Drucken in ZEITSCHRIFT FÜR PHYSIK
  • 2010-08. Branched-chain nature of hydrogen combustion in the detonation mode in KINETICS AND CATALYSIS
  • 2008-09. Stabilized gas combustion wave in an inert porous medium in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 1957-10. Effect of additions of hydrocarbons on the concentration limits for flame propagation in gas mixtures containing hydrogen in RUSSIAN CHEMICAL BULLETIN
  • 2010-09. Thermal Explosion of a Gas Mixture in a Porous Hollow Cylinder in COMBUSTION, EXPLOSION, AND SHOCK WAVES
  • 2008-12. Effect of added reactive agents on the flame propagation velocity in rich hydrogen-air mixtures in THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING
  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1134/s0036024415110035

    DOI

    http://dx.doi.org/10.1134/s0036024415110035

    DIMENSIONS

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