by National Aeronautics and Space Administration, For sale by the National Technical Information Service in [Washington, DC], [Springfield, Va .
Written in English
|Statement||Paul C. Schmitz and Lee S. Mason.|
|Series||NASA technical memorandum -- 103698.|
|Contributions||Mason, Lee S., United States. National Aeronautics and Space Administration.|
|The Physical Object|
Space reactor/Stirling cycle systems for high power lunar application (SuDoc NAS ) [Paul C. Schmitz] on *FREE* shipping on qualifying : Paul C. Schmitz. Get this from a library! Space reactor/Stirling cycle systems for high power lunar application. [Paul C Schmitz; Lee S Mason; United States. National Aeronautics and Space Administration.]. Space reactor/Stirling cycle systems for high power lunar application. [Washington, DC]: [Springfield, Va: National Aeronautics and Space Administration ; For sale by the National Technical Information Service. MLA Citation. Schmitz, Paul C. and Mason, Lee S. and United States. National Aeronautics and Space Administration. Follow Paul C. Schmitz and explore their bibliography from 's Paul C. Schmitz Author Page.
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Thermodynamic analysis and optimization of a Stirling cycle for lunar surface nuclear power system while Brayton cycles are more suitable for . Patrick McClure is the Kilopower project lead at the U.S. Department of Energy's Los Alamos National Laboratory in New Mexico. David . During the design of the lunar surface nuclear power system, it was expected to gain the lowest total mass under the premise of guaranteed electrical power supply. The mass of the power system could be easily obtained if the specific masses of the reactor, Stirling engine and heat rejection system were by: NASA, working with the Department of Energy (DOE), has developed a small, lightweight nuclear reactor power system that could make long-duration exploration on the moon, Mars, and even farther.