Controlling the position of a stabilized detonation wave in a supersonic gas mixture flow in a plane channel


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Abstract

Stabilization of a detonation wave in a stoichiometric hydrogen–air mixture flowing at a supersonic velocity into a plane symmetric channel with constriction has been studied in the framework of a detailed kinetic mechanism of the chemical interaction. Conditions ensuring the formation of a thrust-producing f low with a stabilized detonation wave in the channel are determined. The inf luence of the inf low Mach number, dustiness of the combustible gas mixture supplied to the channel, and output cross-section size on the position of a stabilized detonation wave in the f low has been analyzed with a view to increasing the efficiency of detonation combustion of the gas mixture. It is established that thrust-producing flow with a stabilized detonation wave can be formed in the channel without any energy consumption.

About the authors

V. A. Levin

Institute of Mechanics

Email: zhuravskaya@imec.msu.ru
Russian Federation, Moscow, 119192

T. A. Zhuravskaya

Institute of Mechanics

Author for correspondence.
Email: zhuravskaya@imec.msu.ru
Russian Federation, Moscow, 119192


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