Stability of strong detonation waves for Majda’s model with general ignition functions

Author:

Jung Soyeun,Yang Zhao,Zumbrun Kevin

Abstract

For strong detonation waves of the inviscid Majda model, spectral stability was established by Jung and Yao for waves with step-type ignition functions, by a proof based largely on explicit knowledge of wave profiles. In the present work, we extend their stability results to strong detonation waves with more general ignition functions where explicit profiles are unknown. Our proof is based on reduction to a generalized Sturm-Liouville problem, similar to that used by Sukhtayev, Yang, and Zumbrun to study spectral stability of hydraulic shock profiles of the Saint-Venant equations.

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics

Reference13 articles.

1. [BZ] B. Barker and K. Zumbrun, A numerical stability investigation of strong ZND detonations for Majda’s model, preprint; arXiv:1011.1561.

2. [Er1] J. J. Erpenbeck, Stability of steady-state equilibrium detonations, Phys. Fluids 5 (1962), 604–614.

3. Stability of step shocks;Erpenbeck, Jerome J.;Phys. Fluids,1962

4. [Er3] J. J. Erpenbeck, Stability of idealized one-reaction detonations, Phys. Fluids 7 (1964).

5. Equivalence of low-frequency stability conditions for multidimensional detonations in three models of combustion;Jenssen, Helge Kristian;Indiana Univ. Math. J.,2005

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