From laminar to turbulent detonations in energetic materials from molecular dynamics simulations

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Abstract

The structure of a self-sustained detonation wave in solid energetic materials was studied using molecular dynamics simulations. Energetic materials are described by the AB model with parameters modified to investigate the detonation-wave structures. It is found that depending on the reaction barrier for the exothermic reactions driving the detonation and the boundary conditions of the sample this simple model exhibits a detonation structure that can range from a planar to a complex turbulent detonation. The different regimes of condensed-phase detonation seen are similar to those observed in gases and diluted liquids. © Published under licence by IOP Publishing Ltd.

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Zhakhovsky, V. V., Budzevich, M. M., Landerville, A. C., Oleynik, I. I., & White, C. T. (2014). From laminar to turbulent detonations in energetic materials from molecular dynamics simulations. In Journal of Physics: Conference Series (Vol. 500). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/500/17/172005

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