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Euler and Navier-Stokes solutions for hypersonic flowsAn upwind finite-element technique that uses cell-centered quantities and implicit and/or explicit time marching has been developed for computing hypersonic laminar viscous flows using adaptive unstructured grids in two and three dimensions. A perfect gas model as well as an equilibrium air model is implemented for solving high-speed flows. A first-order basic scheme and a higher-order flux-corrected transport (FCT) scheme have been implemented. This technique has been used to predict 'Type III and IV' shock interactions on a cylinder in two dimensions and a swept cylinder in three dimensions, with a view to determine the pressure and heating rate augmentation caused by an impinging shock on the leading edge of a cowl lip of an engine inlet. The predictions of wall pressure and heating rates compare very well with experimental data. The flow features are very distinctly captured with a sequence of adaptively-generated grids. Three-dimensional corner flow, typically encountered in engine inlets due to compression of the flow by ramps in the walls, is also modeled. This procedure is the first step in developing an integrated fluid, thermal, structural analysis capability for hypersonic flight vehicles like the National Aero-Space Plane.
Document ID
19900031199
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Thareja, Rajiv R.
(Planning Research Corp. Hampton, VA, United States)
Prabhu, Ramadas K.
(Planning Research Corp. Hampton, VA, United States)
Stewart, James R.
(Planning Research Corp. Hampton, VA, United States)
Morgan, Ken
(Planning Research Corp. Hampton, VA, United States)
Peraire, Jaime
(University of Wales Swansea, United States)
Date Acquired
August 14, 2013
Publication Date
January 1, 1989
Subject Category
Aerodynamics
Meeting Information
Meeting: International Conference on Finite Element Methods in Flow Problems
Location: Huntsville, AL
Country: United States
Start Date: April 3, 1989
End Date: April 7, 1989
Accession Number
90A18254
Funding Number(s)
CONTRACT_GRANT: NAGW-478
Distribution Limits
Public
Copyright
Other

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