Project overview
This project aims to re-engineer a code for direct and large eddy simulation of transitional and turbulent flow. The original code was developed by the applicants for simulation of shock-wave/boundary-layer interaction (SBLI) problems and has become known as the SBLI code. Since its development the code has proved to be a flexible research tool and has been applied to a wide range of research problems including subsonic airfoils and aero-acoustics. With more geometrically-challenging applications and new algorithmic improvements, such as non-reflecting boundary conditions and sub-grid scale models for turbulence, the code has split into several variants. The present project will undertake a comprehensive re-engineering of the code, aiming to add capability and bring the various elements back together, while retaining the flexibility of the original code as a research platform. Well-developed code elements will be modularised and removed from normal user access. A suite of validation cases will be programmed and used during the code modification, which will include an update to current language version and incorporation of a version control system for parts of the code. The utility of the new version will be demonstrated by a new state-of-the-art direct numerical simulation of transition due to oblique shock wave impingement, including more flow physics than previous simulations. A formal code release will be made during the project, with users consulted throughout.
Staff
Lead researchers
Collaborating research institutes, centres and groups
Research outputs
N.D. Sandham, E. Schuelein, A Wagner, S Willems & J Steelant,
2014, Journal of Fluid Mechanics, 752, 1-33
DOI: 10.1017/jfm.2014.333
Type: article
N. De Tullio, P. Paredes, N. D. Sandham & V. Theofilis,
2013, Journal of Fluid Mechanics, 735, 613-646
DOI: 10.1017/jfm.2013.520
Type: article
J.A. Redford, N.D. Sandham & G.T. Roberts,
2012, Progress in Aerospace Sciences, 52, 67-79
Type: article
Emile Touber & Neil D. Sandham,
2011, Journal of Fluid Mechanics, 671, 417-465
Type: article
J.A. Redford, N.D. Sandham & G.T. Roberts,
2010, AIAA Journal, 48(12), 2818-2830
DOI: 10.2514/1.J050186
Type: article
J.A. Redford, N.D. Sandham & G.T. Roberts,
2010, Computers & Fluids, 45, 37-46
Type: article
Nicola De Tullio & Neil D. Sandham,
2010, Physics of Fluids, 22, 094105- [15pp]
DOI: 10.1063/1.3481147
Type: article