Hypersonic strong-interaction similarity solutions for flow past a flat plate

Author:

Bush William B.

Abstract

The hypersonic strong-interaction regime for the flow of a viscous, heat-conducting compressible fluid past a flat plate is analysed using the Navier–Stokes equations as a basis. It is assumed that the fluid is a perfect gas having constant specific heats, a constant Prandtl number σ, whose numerical value is of order one, and a viscosity coefficient varying as a power, ω, of the absolute temperature. Limiting forms of solutions are studied as the free-stream Mach numberM, the free-stream Reynolds number based on the plate lengthRL, and the interaction parameterx= {(γM2)2+ω/RL}½, go to infinity.Through the use of asymptotic expansions and matching, it is shown that, for (1−ω) > 0, three distinct layers for which similarity exists make up the region between the shock wave and the plate. The behaviour of the flow in these three layers is analysed.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference6 articles.

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3. Oguchi, H. 1958 Aero. Res. Inst., Univ. of Tokyo Rept. no. 330.

4. Ladyzhenskii, M. D. 1963 Prikl. Mat. Mekh. 27,76.

5. Van Dyke, M. D. 1954 NACA Rept. no. 1194.

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