Large-Eddy Simulation of Transition in a Separation Bubble

Author:

Roberts Stephen K.1,Yaras Metin I.1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Carleton University, 3135 Mackenzie Bldg., Ottawa, Ontario, Canada K1S 5B6

Abstract

In this paper, large-eddy simulation of the transition process in a separation bubble is compared to experimental results. The measurements and simulations are conducted under low freestream turbulence conditions over a flat plate with a streamwise pressure distribution typical of those encountered on the suction side of turbine airfoils. The computational grid is refined to the extent that the simulation qualifies as a “coarse” direct numerical simulation. The simulations are shown to accurately capture the transition process in the separated shear layer. The results of these simulations are used to gain further insight into the breakdown mechanisms in transitioning separation bubbles.

Publisher

ASME International

Subject

Mechanical Engineering

Reference49 articles.

1. Hall, A. A., and Hislop, G. S., 1938, “Experiments on the Transition of the Laminar Boundary Layer on a Flat Plate,” ARC R & M 1843.

2. Schubauer, G. B., and Skramstad, H. K., 1948, “Laminar Boundary-Layer Oscillations and Transition on a Flat Plate,” NACA TN 909.

3. The Laminar-Turbulent Transition in a Boundary Layer-Part 1;Emmons;J. Aeronautical Sci.

4. The Three-dimensional Nature of Boundary-layer Transition;Klebanoff;J. Fluid Mech.

5. On the Distribution of Intermittency in the Transition Region of a Boundary Layer;Narasimha;J. Aeronautical Sci.

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