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- W2082404799 abstract "NASA's Office of Aero-Space Technology (OAST) established three major goals, referred to as, Three Pillars for Success. The Advanced Transportation Program Office (ASTP) at the NASA's Marshall Flight Center (MSFC) in Huntsville, Ala. focuses on future space transportation technologies under the Access to Space pillar. One of the main activities over the past three years has been on advancing the hydrogen fueled rocket-based combined cycle (RBCC) technologies. The RBCC effort that was completed early this year was the initial step leading to flight demonstrations of the technology for space launch vehicle propulsion. Aerojet and Boeing-Rocketdyne designed, built and ground tested their RBCC engine concepts. In addition, ASTROX, Georgia Institute of Technology, McKinney Associates, Pennsylvania State University (PSU), and University of Alabama in Huntsville conducted supporting activities. The RBCC activity included ground testing of components (e.g., injectors, thrusters, ejectors and inlets) and integrated flowpaths. Inlet testing was performed at the Lewis Research Center's 1 x 1 wind tunnel. All direct connect and free-jet engine testing were conducted at the GASL facilities on Long Island, New York. Testing spanned the Mach range from sea level static to Mach 8. Testing of the rocket-only mode, simulating the final phase of the ascent mission profile, was also performed. The originally planned work on these contracts was completed in 1999. Follow-on activities have been initiated for both hydrogen and hydrocarbon fueled RBCC concepts. Studies to better understand system level issues with the integration of RBCC propulsion with earth-to-orbit vehicles have also been conducted. This paper describes the status, progress and future plans of the RBCC activities funded by NASA/MSFC with a major focus on the benefits of utilizing air-breathing combined-cycle propulsion in access-to-space applications." @default.
- W2082404799 created "2016-06-24" @default.
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- W2082404799 date "1999-08-22" @default.
- W2082404799 modified "2023-09-25" @default.
- W2082404799 title "Rocket-based combined cycle propulsion technology for access-to-space applications" @default.
- W2082404799 doi "https://doi.org/10.2514/6.1999-4925" @default.
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