Development of magnetohydrodynamic boundary layers associated with the sudden initiation or deceleration of a supersonic flow at the boundary of a half-space

Author:

Vatazhin A. B.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference10 articles.

1. I. B. Chekmarev, ?Nonstationary flow of a viscous incompressible conducting fluid in a half-space in the presence of a transverse magnetic field,? Zh. tekhn. fiz., Vol. 30, No. 8, pp., 920?924, 1960.

2. Z. G. Sakhnovskii, ?Allowance for conductivity anisotropy in the magnetohydrodynamic Rayleigh problem,? Zh. tekhn. fiz., Vol. 33, No. 5, pp., 631?635, 1963.

3. V. B. Baranov, G. A. Lyubimov, and Hu Yü-yin, ?Calculation of the boundary layer on a dielectric plate in a flow of incompressible, anisotropically conducting fluid in the presence of a uniform magnetic field normal to the plate,? PMM, Vol. 27, No. 3, pp., 509?522, 1963.

4. A. S. Predvoditelev, E. V. Stupochenko, et al., Tables of Thermodynamic Functions for Air [in Russian], Pt. 1, Izd-vo AN SSSR, 1962.

5. W. B. Bush ?Compressible flat-plate boundary layer flow with an applied magnetic field,? J. Aero-Space Sci., Vol. 27, No. 1, pp., 49?58, 1960.

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1. Optimization of a dc plasmotron with longitudinal arc;Fluid Dynamics;1977

2. Investigation of a one-dimensional flow of gas in the channel of a plasmotron;Fluid Dynamics;1976

3. The unsteady spatial laminar boundary layer in magnetohydrodynamics;Journal of Applied Mechanics and Technical Physics;1972

4. Development of magnetohydrodynamic boundary layers;Journal of Applied Mechanics and Technical Physics;1965-07

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