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タイトルAffordable Flight Demonstration of the GTX Air-Breathing SSTO Vehicle Concept
本文(外部サイト)http://hdl.handle.net/2060/20030055618
著者(英)Roche, Joseph M.; Krivanek, Thomas M.; Riehl, John P.; Kosareo, Daniel N.
著者所属(英)NASA Glenn Research Center
発行日2003-04-01
言語eng
内容記述The rocket based combined cycle (RBCC) powered single-stage-to-orbit (SSTO) reusable launch vehicle has the potential to significantly reduce the total cost per pound for orbital payload missions. To validate overall system performance, a flight demonstration must be performed. This paper presents an overview of the first phase of a flight demonstration program for the GTX SSTO vehicle concept. Phase 1 will validate the propulsion performance of the vehicle configuration over the supersonic and hypersonic air- breathing portions of the trajectory. The focus and goal of Phase 1 is to demonstrate the integration and performance of the propulsion system flowpath with the vehicle aerodynamics over the air-breathing trajectory. This demonstrator vehicle will have dual mode ramjetkcramjets, which include the inlet, combustor, and nozzle with geometrically scaled aerodynamic surface outer mold lines (OML) defining the forebody, boundary layer diverter, wings, and tail. The primary objective of this study is to demon- strate propulsion system performance and operability including the ram to scram transition, as well as to validate vehicle aerodynamics and propulsion airframe integration. To minimize overall risk and develop ment cost the effort will incorporate proven materials, use existing turbomachinery in the propellant delivery systems, launch from an existing unmanned remote launch facility, and use basic vehicle recovery techniques to minimize control and landing requirements. A second phase would demonstrate propulsion performance across all critical portions of a space launch trajectory (lift off through transition to all-rocket) integrated with flight-like vehicle systems.
NASA分類Aircraft Design, Testing and Performance
レポートNONASA/TM-2003-212315
E-13316
NAS 1.15:212315
APS-III-22
権利Copyright, Distribution as joint owner in the copyright


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