Numerical simulations of shock wave propagation in condensed multiphase materials |
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Authors: | Eric Daniel Jacques Massoni |
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Affiliation: | (1) Université de Provence Polytech’Marseille, IUSTI, UMR CNRS 6595, 5 rue E. Fermi, 13453 Marseille Cedex 13, France;(2) INRIA SMASH Project, 5 rue E. Fermi, 13453 Marseille Cedex 13, France |
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Abstract: | We propose to find out numerical solutions of a travelling shock wave in condensed mixtures by using a direct numerical simulation. Condensed multiphase materials under shock wave conditions are mechanically characterized by a unique pressure and a unique velocity. In this study, the mixture is considered as a collection of grains separated by interface between each material: this problem of interfaces is solved by a diffuse interface method. The results will be compared to existing one-dimensional numerical models, analytical solutions and also experimental data. The volume fraction (or the phase temperature) is not measured in experiments and it is then important to verify the behaviour of a phase quantity through various methods. A non-monotonous evolution of the volume fraction is obtained with analytical solution as well as numerical simulation. |
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Keywords: | Shock wave Condensed material Jump relations Direct numerical simulation |
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