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RTJ-303: Variable geometry, oblique wing supersonic aircraftThis document is a preliminary design of a High Speed Civil Transport (HSCT) named the RTJ-303. It is a 300 passenger, Mach 1.6 transport with a range of 5000 nautical miles. It features four mixed-flow turbofan engines, variable geometry oblique wing, with conventional tail-aft control surfaces. The preliminary cost analysis for a production of 300 aircraft shows that flyaway cost would be 183 million dollars (1992) per aircraft. The aircraft uses standard jet fuel and requires no special materials to handle aerodynamic heating in flight because the stagnation temperatures are approximately 130 degrees Fahrenheit in the supersonic cruise condition. It should be stressed that this aircraft could be built with today's technology and does not rely on vague and uncertain assumptions of technology advances. Included in this report are sections discussing the details of the preliminary design sequence including the mission to be performed, operational and performance constraints, the aircraft configuration and the tradeoffs of the final choice, wing design, a detailed fuselage design, empennage design, sizing of tail geometry, and selection of control surfaces, a discussion on propulsion system/inlet choice and their position on the aircraft, landing gear design including a look at tire selection, tip-over criterion, pavement loading, and retraction kinematics, structures design including load determination, and materials selection, aircraft performance, a look at stability and handling qualities, systems layout including location of key components, operations requirements maintenance characteristics, a preliminary cost analysis, and conclusions made regarding the design, and recommendations for further study.
Document ID
19930008977
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Antaran, Albert
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Belete, Hailu
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Dryzmkowski, Mark
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Higgins, James
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Klenk, Alan
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Rienecker, Lisa
(California Polytechnic State Univ. San Luis Obispo, CA, United States)
Date Acquired
September 6, 2013
Publication Date
May 29, 1992
Subject Category
Aircraft Design, Testing And Performance
Report/Patent Number
NASA-CR-192054
NAS 1.26:192054
Report Number: NASA-CR-192054
Report Number: NAS 1.26:192054
Accession Number
93N18166
Funding Number(s)
CONTRACT_GRANT: NASW-4435
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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