Negative shock waves

Author:

Thompson P. A.,Lambrakis K. C.

Abstract

Negative or rarefaction shock waves may exist in single-phase fluids under certain conditions. It is necessary that a particular fluid thermodynamic quantity Γ ≡ −½δ In (δP/δν)s/δ In ν be negative: this condition appears to be met for sufficiently large specific heat, corresponding to a sufficient level of molecular complexity. The dynamic formation and evolution of a negative shock is treated, as well as its properties. Such shocks satisfy stability conditions and have a positive, though small, entropy jump. The viscous shock structure is found from an approximate continuum model. Possible experimental difficulties in the laboratory production of negative shocks are briefly discussed.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference23 articles.

1. Zemplén, G. 1905 Sur l'impossibilité des ondes de choc negatives dans les gaz C.R. Acad. Sci., Paris,141,710–712.

2. Zel'dovich, Ya. B. & Raizer, Yu. P. 1967 Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena , vol. 2 (ed. W. D. Hayes & R. F. Probstein ),pp.757–762.Academic.

3. Zel'dovich, Ya. B. & Raizer, Yu. P. 1966 Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena , vol. 1 (ed. W. D. Hayes & R. F. Probstein ),pp.67–69.Academic.

4. Zel'dovich, Ya. B. 1946 On the possibility of rarefaction shock waves Zh. Eksp. Teor. Fiz. 4,363–364.

5. Thompson, P. A. 1971 A fundamental derivative in gasdynamics Phys. Fluids 14,1843–1849.

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