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Integration Of Launch Vehicle Simulation/Analysis Tools And Lunar Cargo Lander DesignPart 2, which will be discussed in this report, will discuss the development of a Lunar Cargo Lander (unmanned launch vehicle) that will transport usable payload from Trans- Lunar Injection to the moon. The Delta IV-Heavy was originally used to transport the Lunar Cargo Lander to TLI, but other launch vehicles have been studied. In order to uncover how much payload is possible to land on the moon, research was needed in order to design the sub-systems of the spacecraft. The report will discuss and compare the use of a hypergolic and cryogenic system for its main propulsion system. The guidance, navigation, control, telecommunications, thermal, propulsion, structure, mechanisms, landing gear, command, data handling, and electrical power sub-systems were designed by scaling off other flown orbiters and moon landers. Once all data was collected, an excel spreadsheet was created to accurately calculate the usable payload that will land on the moon along with detailed mass and volume estimating relations. As designed, The Lunar Cargo Lander can plant 5,400 lbm of usable payload on the moon using a hypergolic system and 7,400 lbm of usable payload on the moon using a cryogenic system.
Document ID
20050215301
Acquisition Source
Marshall Space Flight Center
Document Type
Other
Authors
DeJean, George Brian
(Christian Brothers Univ. Memphis, TN, United States)
Shiue, Yeu-Sheng Paul
(Christian Brothers Univ. Memphis, TN, United States)
King, Jeffrey
(Christian Brothers Univ. Memphis, TN, United States)
Date Acquired
September 7, 2013
Publication Date
January 1, 2005
Publication Information
Publication: The 2004 NASA Faculty Fellowship Program Research Reports
Subject Category
Spacecraft Design, Testing And Performance
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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