Minimum Accommodation for Aerobrake Assembly. Phase 2: Structural Concepts for a Lunar Transfer Vehicle Aerobrake which Can be Assembled on Orbit PDF Download

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Minimum Accommodation for Aerobrake Assembly. Phase 2: Structural Concepts for a Lunar Transfer Vehicle Aerobrake which Can be Assembled on Orbit

Minimum Accommodation for Aerobrake Assembly. Phase 2: Structural Concepts for a Lunar Transfer Vehicle Aerobrake which Can be Assembled on Orbit PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 42

Book Description


Minimum Accommodation for Aerobrake Assembly. Phase 2: Structural Concepts for a Lunar Transfer Vehicle Aerobrake which Can be Assembled on Orbit

Minimum Accommodation for Aerobrake Assembly. Phase 2: Structural Concepts for a Lunar Transfer Vehicle Aerobrake which Can be Assembled on Orbit PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 42

Book Description


Minimum Accommodation for Aerobrake Assembly. Phase 2

Minimum Accommodation for Aerobrake Assembly. Phase 2 PDF Author: National Aeronautics and Space Adm Nasa
Publisher:
ISBN: 9781729017678
Category :
Languages : en
Pages : 42

Book Description
A multidisciplinary conceptual study was conducted to define a reusable lunar transfer vehicle (LTV) aerobrake which could be launched on a Space Shuttle of Titan 4 and assembled on orbit at Space Station Freedom. A major objective was to design an aerobrake, with integrated structure and thermal protection systems, which has a mass less than 20 percent (9040 lb) of the LTV lunar return mass. The aerobrake segmentation concepts, the structural concepts, a joint concept for assembly, and a structural design with analysis of the aerobrake are described. Results show that a 50-foot diameter LTV aerobrake can be designed for on-orbit assembly which will achieve the 20 percent mass budget. Dorsey, John T. and Watson, Judith J. and Tutterow, Robin D. Langley Research Center RTOP 506-43-41-02...

Scientific and Technical Aerospace Reports

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ISBN:
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Minimum Accommodation for Aerobrake Assembly, Phase 2

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