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Detonation of a Column of a Chemically Active Bubbly Medium in a Liquid

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Combustion, Explosion and Shock Waves Aims and scope

Abstract

The problem of a detonation wave propagating in a cylindrical column of a chemically active bubbly medium screened by a liquid from the tube walls is formulated and numerically solved within the framework of the Iordanskii–Kogarko two-phase model with allowance for energy dissipation due to acoustic radiation of bubbles. The wave structure of the reaction zone and the detonation velocity of the bubbly medium column are calculated. It is found that the self-sustaining wave can propagate with a velocity greater than the velocity of one-dimensional bubble detonation by a factor of 1.5–2.5.

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Zhdan, S.A. Detonation of a Column of a Chemically Active Bubbly Medium in a Liquid. Combustion, Explosion, and Shock Waves 39, 458–463 (2003). https://doi.org/10.1023/A:1024743123338

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