Wall-Modeled Large-Eddy Simulation for Complex Turbulent Flows

Author:

Bose Sanjeeb T.12,Park George Ilhwan34

Affiliation:

1. Cascade Technologies, Inc., Palo Alto, California 94303;

2. Institute for Computational and Mathematical Engineering, Stanford University, Stanford, California 94305

3. Center for Turbulence Research, Stanford University, Stanford, California 94305

4. Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, Pennsylvania 19104

Abstract

Large-eddy simulation (LES) has proven to be a computationally tractable approach to simulate unsteady turbulent flows. However, prohibitive resolution requirements induced by near-wall eddies in high–Reynolds number boundary layers necessitate the use of wall models or approximate wall boundary conditions. We review recent investigations in wall-modeled LES, including the development of novel approximate boundary conditions and the application of wall models to complex flows (e.g., boundary-layer separation, shock/boundary-layer interactions, transition). We also assess the validity of underlying assumptions in wall-model derivations to elucidate the accuracy of these investigations, and offer suggestions for future studies.

Publisher

Annual Reviews

Subject

Condensed Matter Physics

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