The shape of incident shock wave in steady axisymmetric conical Mach reflection

Author:

Ren Yu-xinORCID,Tan Lianhua,Wu Zi-niu

Abstract

Abstract For internal flow with supersonic inflow boundary conditions, a complicated oblique shock reflection may occur. Different from the planar shock reflection problem, where the shape of the incident shock can be a straight line, the shape of the incident shock wave in the inward-facing axisymmetric shock reflection in steady flow is an unknown curve. In this paper, a simple theoretical approach is proposed to determine the shape of this incident shock wave. The present theory is based on the steady Euler equations. When the assumption that the streamlines are straight lines at locations just behind the incident shock is adopted, an ordinary differential equation can be derived, and the shape of the incident shock wave is given by the solution of this ordinary differential equation. The predicted curves of the incident shock wave at several inlet conditions agree very well with the results of the numerical simulations.

Publisher

Springer Science and Business Media LLC

Reference8 articles.

1. Li H, Ben-Dor G (1997) A parametric study of Mach reflection in steady flows. J Fluid Mech 341:101–125

2. Mölder et al (1997) Focusing of conical shocks at the center-line of symmetry. In: Houwing AFP, Paull A (eds) Shock Waves. Panther Publishing and Printing, Canberra, pp 875–880

3. Hornung HG, Schwendeman DW (2001) Oblique shock reflection from an axis of symmetry: shock dynamics and relation to the Guderley singularity. J Fluid Mech 438:231–245

4. Whitham GB (1974) Linear and nonlinear waves. Wiley-Interscience, London

5. Hornung HG (2000) Oblique shock reflection from an axis of symmetry. J Fluid Mech 409:1–12

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