On the Behaviour of High-Order One-Step Monotonicity-Preserving Scheme for Direct Numerical Simulation of Shocked Turbulent Flows
Author:
Affiliation:
1. Université Paris-Saclay, CNRS, LIMSI, Orsay, France
2. Université Paris-Saclay, Univ Evry, LMEE, Evry Cedex, France
Publisher
Informa UK Limited
Subject
Mechanical Engineering,Mechanics of Materials,Energy Engineering and Power Technology,Condensed Matter Physics,Aerospace Engineering,Computational Mechanics
Link
https://www.tandfonline.com/doi/pdf/10.1080/10618562.2020.1819535
Reference56 articles.
1. Dynamic linear response of a shock/turbulent-boundary-layer interaction using constrained perturbations
2. Aubard, G. 2012. “Large Eddy Simulation of the Low-Frequency Unsteadiness of a Shock-Wave Turbulent Boundary Layer Interaction on a Flat Plate.” Theses, Arts et Métiers ParisTech. https://pastel.archives-ouvertes.fr/pastel-00728991.
3. Aubard, G., X. Gloerfelt, and J.C. Robinet. 2012. “Characterisation of Synthetic Turbulence Methods for Large-Eddy Simulation of Supersonic Boundary Layers. In Progress in Turbulence and Wind Energy IV. Springer Proceedings in Physics Book Series (SPPHY, Vol. 141), 81–84.
4. Large-Eddy Simulation of Broadband Unsteadiness in a Shock/Boundary-Layer Interaction
5. Shock Wave–Boundary-Layer Interactions
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1. Numerical Investigation on Unsteady Shock Wave/Vortex/Turbulent Boundary Layer Interactions of a Hypersonic Vehicle during Its Shroud Separation;Aerospace;2022-10-19
2. High-order numerical scheme for compressible multi-component real gas flows using an extension of the Roe approximate Riemann solver and specific Monotonicity-Preserving constraints;Journal of Computational Physics;2022-02
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