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タイトルCavity Heating Experiments Supporting Shuttle Columbia Accident Investigation
本文(外部サイト)http://hdl.handle.net/2060/20110011174
著者(英)Merski, N. Ronald; Bey, Kim S.; Berger, Karen T.; Everhart, Joel L.; Wood, William A.
著者所属(英)NASA Langley Research Center
発行日2011-03-01
言語eng
内容記述The two-color thermographic phosphor method has been used to map the local heating augmentation of scaled idealized cavities at conditions simulating the windward surface of the Shuttle Orbiter Columbia during flight STS-107. Two experiments initiated in support of the Columbia Accident Investigation were conducted in the Langley 20-Inch Mach 6 Tunnel. Generally, the first test series evaluated open (length-to-depth less than 10) rectangular cavity geometries proposed as possible damage scenarios resulting from foam and ice impact during launch at several discrete locations on the vehicle windward surface, though some closed (length-to-depth greater than 13) geometries were briefly examined. The second test series was designed to parametrically evaluate heating augmentation in closed rectangular cavities. The tests were conducted under laminar cavity entry conditions over a range of local boundary layer edge-flow parameters typical of re-entry. Cavity design parameters were developed using laminar computational predictions, while the experimental boundary layer state conditions were inferred from the heating measurements. An analysis of the aeroheating caused by cavities allowed exclusion of non-breeching damage from the possible loss scenarios being considered during the investigation.
NASA分類Fluid Mechanics and Thermodynamics
レポートNOLF99-4230
NASA/TM-2011-214528
L-19292
権利No Copyright


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