Addressing the hypersonic simulation problemThe hypersonic simulation problem is solved by the meshing of bench-marked experimental data with results from validated computational fluid dynamic codes. The example presented is for the reentry of the Space Shuttle Orbiter. Mach number effects were assessed by parametrically varying free-stream Mach number and angle of attack in a series of inviscid, perfect-gas computations carried out on a modified Orbiter geometry. Real-gas effects were determined by making calculations at specific points of the reentry trajectory using equilibrium air thermodynamics and comparing with corresponding perfect-gas computations. Viscous computations were also made for both the basic Orbiter body and control surfaces. A methodology is developed that permits the extrapolation of wind tunnel data to flight situations, providing a solution to the hypersonic simulation problem.
Document ID
19860047372
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Griffith, B. J. (Calspan Field Services, Inc. Arnold AFS, TN, United States)
Maus, J. R. (Calspan Field Services, Inc. Arnold AFS, TN, United States)
Majors, B. M. (Calspan Corp. Arnold Air Force Station, TN, United States)
Best, J. T. (USAF, Arnold Engineering Development Center Arnold Air Force Station, TN, United States)
Date Acquired
August 12, 2013
Publication Date
April 1, 1986
Subject Category
Aerodynamics
Report/Patent Number
AIAA PAPER 86-9775Report Number: AIAA PAPER 86-9775