The classical linear stability of the steady detonation wave with finite reaction zone is here studied within kinetic theory extended to chemically reacting gases with a two-way bimolecular reaction. The Euler equations and the Rankine-Hugoniot conditions of the kinetic model are linearized through a normal mode expansion around the steady detonation solution which is known from a previous paper. The linear stability is formulated by means of a non closed system of unknown perturbations with initial data at von Neumann state. A dispersion relation at the end of the reaction zone assures its determinacy.

Modeling of linear stability of planar detonation waves in extended kinetic theory / Monaco, Roberto; Pandolfi, Miriam; A. J., Soares. - (2008), pp. 421-426. (Intervento presentato al convegno 14th Conference on WASCOM 2007 tenutosi a Baia Samuele (ITA) nel 30 June – 7 July 2007) [10.1142/9789812772350_0058].

Modeling of linear stability of planar detonation waves in extended kinetic theory

MONACO, Roberto;PANDOLFI, Miriam;
2008

Abstract

The classical linear stability of the steady detonation wave with finite reaction zone is here studied within kinetic theory extended to chemically reacting gases with a two-way bimolecular reaction. The Euler equations and the Rankine-Hugoniot conditions of the kinetic model are linearized through a normal mode expansion around the steady detonation solution which is known from a previous paper. The linear stability is formulated by means of a non closed system of unknown perturbations with initial data at von Neumann state. A dispersion relation at the end of the reaction zone assures its determinacy.
2008
9789812772343
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/1796878
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