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Near-Body Mesh Adaption for Transitional Flows Using OVERFLOWAccurate modeling of boundary-layer transition is an important aspect of developing greener air transport technologies. In that regard, transition models based on auxiliary transport equations offer a robust approach that is easily integrated into the Reynolds-averaged Navier-Stokes (RANS) solvers. Recent workshops under NATO and AIAA have identified the verification of transport-equations-based transition modeling as a critical aspect of reducing the scatter between the predictions of different CFD codes. Follow-on work has highlighted the need for highly dense grids to achieve an asymptotic convergence of transition related flow metrics. The present work examines the role of automatic near-body mesh adaptation capability in the NASA OVERFLOW CFD solver to enable verification studies in an efficient manner, and for establishing best practices for designing grids for the RANS-based transition models. A sensor function relevant to the Langtry-Menter \gamma-Re_{\theta t}\ transition model has been identified and used for error-based mesh adaptation for canonical configurations comprising a flat plate, and the S809 and NLR-7301 airfoils. The efficacy of the mesh adaptation approach is assessed for flow conditions involving multiple transition scenarios such as natural transition, separation-induced transition, and shock-induced transition. The results from this exploratory study indicate that the meshes adapted using the proposed sensor provide solutions that approach the references solutions obtained with uniformly refined hand-crafted meshes, in terms of the chosen metrics, and yield modest yet significant savings in grid count. We also highlight areas for improvement in the grid adaptation methodology within OVERFLOW.
Document ID
20240008420
Acquisition Source
Langley Research Center
Document Type
Presentation
Authors
Balaji Venkatachari
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Michael Donello
(Langley Research Center Hampton, United States)
Joseph Derlaga
(Langley Research Center Hampton, United States)
Meelan Choudhari
(Langley Research Center Hampton, United States)
Date Acquired
July 2, 2024
Subject Category
Aerodynamics
Meeting Information
Meeting: Twelfth International Conference on Computational Fluid Dynamics (ICCFD12)
Location: Kobe
Country: JP
Start Date: July 15, 2024
End Date: July 19, 2024
Sponsors: RIKEN Center for Computational Science
Funding Number(s)
WBS: 109492.02.07.09.01
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
CFD
Mesh adaption
Boundary layer Transition
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