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Computational Aerothermodynamic Simulation Issues on Unstructured GridsThe synthesis of physical models for gas chemistry and turbulence from the structured grid codes LAURA and VULCAN into the unstructured grid code FUN3D is described. A directionally Symmetric, Total Variation Diminishing (STVD) algorithm and an entropy fix (eigenvalue limiter) keyed to local cell Reynolds number are introduced to improve solution quality for hypersonic aeroheating applications. A simple grid-adaptation procedure is incorporated within the flow solver. Simulations of flow over an ellipsoid (perfect gas, inviscid), Shuttle Orbiter (viscous, chemical nonequilibrium) and comparisons to the structured grid solvers LAURA (cylinder, Shuttle Orbiter) and VULCAN (flat plate) are presented to show current capabilities. The quality of heating in 3D stagnation regions is very sensitive to algorithm options in general, high aspect ratio tetrahedral elements complicate the simulation of high Reynolds number, viscous flow as compared to locally structured meshes aligned with the flow.
Document ID
20040082498
Acquisition Source
Langley Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Gnoffo, Peter A.
(NASA Langley Research Center Hampton, VA, United States)
White, Jeffery A.
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
September 8, 2013
Publication Date
January 1, 2004
Subject Category
Fluid Mechanics And Thermodynamics
Report/Patent Number
AIAA Paper 2004-2371
Report Number: AIAA Paper 2004-2371
Meeting Information
Meeting: 34th AIAA Fluid Dynamics Conference and Exhibit
Location: Portland, OR
Country: United States
Start Date: June 28, 2004
End Date: July 1, 2004
Sponsors: American Inst. of Aeronautics and Astronautics
Funding Number(s)
OTHER: 23-376-70-30-08
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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