Three-dimensional separated flow structure over a cylinder with a hemispherical cap

Author:

Hsieh T.,Wang K. C.

Abstract

Thin-layer Navier–Stokes solutions are obtained for an incompressible laminar flow over a hemisphere–cylinder at 10°, 30° and 50° incidence to exhibit some three-dimensional separated flow characteristics. Some of the results are compared with a previous water-tunnel investigation for the same body geometry. Good agreement is found, even for some detailed features. Although the geometry is relatively simple, the separated flow surprisingly embraces a number of intricate structural characteristics unique to three-dimensional flows. Particularly noteworthy are the separation sequence at increasing incidence, tornado-like vortices, outward-spiralling vortices, limit cycles, coaxial counter-spiralling patterns and horseshoe vortex systems. Physical insights to these new features are offered.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference27 articles.

1. Hoang, N. T. , Rediniotis, X. & Telionis, D. T. 1991 Separation over axi-symmetric bodies at large angles of attack.AIAA Paper 91–0277.

2. Hsieh, T. 1976 An investigation of separated flow about a hemisphere-cylinder at 0–19-deg. incidence in the Mach number from 0.6 to 1.5. Tech. Rep. 76–112.Arrnold Engineering Development Center.

3. Wang, K. C. & Hsieh, T. 1992 Separation pattern and flow structure about a hemisphere-cylinder at high incidence.AIAA Paper 92–2712.

4. Zhang, H. X. & Deng, X. G. 1992 Analytical studies for three-dimensional steady separated flows and vortex motion. ACTA Aerodynamics SINICA 10,1 (in Chinese).

5. Van Leer, B. , Thomas, J. L. , Roe, P. L. & Newsome, R. W. 1987 A comparison of numerical flux formulas for Euler and Navier—Stokes equations.AIAA Paper 87–1104-cp.

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