2013Combustion Explosion and Shock WavesRequires access

Numerical simulation of experiments to determine ignition delays behind incident shock wave

V. Yu. Gidaspov, Natalia S. Severina

Open publisher page 8 citations

Abstract

This paper presents a physicomathematical model and results of numerical simulation of the initiation and propagation of detonation waves in shock tubes. A combustible mixture of hydrogen and oxygen diluted with argon is considered. A detailed structure of the flow in the shock tube is obtained by calculations. The calculated ignition delay was compared with experimental data.

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What this paper is about

This paper presents a physicomathematical model and results of numerical simulation of the initiation and propagation of detonation waves in shock tubes. A combustible mixture of hydrogen and oxygen diluted with argon is considered. A detailed structure of the flow in the shock tube is obtained by calculations. The calculated ignition delay was compared with experimental data.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents a physicomathematical model and results of numerical simulation of the initiation and propagation of detonation waves in shock tubes. A combustible mixture of hydrogen and oxygen diluted with argon is considered. A detailed structure of the flow in the shock tube is obtained by calculations. The calculated ignition delay was compared with experimental data.

Key concepts: Detonation, Shock wave, Ignition system, Mechanics, Shock tube, Shock (circulatory), Computer simulation, Deflagration to detonation transition

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