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Theoretical and experimental investigations of the reflexion of normal shock waves with vibrational relaxation

Published online by Cambridge University Press:  28 March 2006

N. H. Johannesen
Affiliation:
Department of the Mechanics of Fluids, University of Manchester
G. A. Bird
Affiliation:
Department of the Mechanics of Fluids, University of Manchester
H. K. Zienkiewicz
Affiliation:
Department of the Mechanics of Fluids, University of Manchester

Abstract

The one-dimensional problem of shock-wave reflexion with relaxation is treated numerically by combining the shock-wave, characteristic, and Rayleigh-line equations. The theoretical results are compared with pressure and density measurements in CO2, and the agreement is found to be excellent.

Type
Research Article
Copyright
© 1967 Cambridge University Press

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References

Baganoff, D. 1964 Rev. Sci. Instr. 35, 288.
Baganoff, D. 1965 J. Fluid Mech. 23, 209.
Dyner, H. B. 1966 Physics of Fluids, 9, 879. HILSENRATH, J. et al. 1955 Nat. Bur. St. Circ. no. 564.
Hurle, I. R., Russo, A. L. & Hall, J. G. 1964 J. Chem. Phys. 40, 2076.
Johannesen, N. H. 1901 J. Fluid Mech. 10, 25.
Johannesen, N. H., Zienkiewicz, H. K., Blythe, P. A. & Gerrard, J. H. 1962 J. Fluid Mech. 13, 213.
Mises, R. Von 1958 Mathematical Theory of Compressible Fluid Flow. New York: Academic Press.
Phinney, R. 1964 A.I.A.A. J. 2, 240.
Shapiro, A. H. 1954 The Dynamics and Thermodynamics of Compressible Fluid Flow. New York: Ronald Press.
Zienkiewicz, H. K. & Johannesen, N. H. 1963 J. Fluid Mech. 17, 499 (and corrigendum 18 (1964), 635).
Zienkiewicz, H. K., Johannesen, N. H. & Gerrard, J. H. 1963 J. Fluid Mech. 17, 267.