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Evolution of systems concepts for a 100 kWe class Space Nuclear Power SystemConceptual designs for the SP-100 Space Nuclear Power System have been prepared that meet baseline, backup and growth program scenarios. Near-term advancement in technology was considered in the design of the Baseline Concept. An improved silicon-germanium thermoelectric technique is used to convert the heat from a fast-spectrum, liquid lithium cooled reactor. This system produces a net power of 100 kWe with a 10-year end of life, under the specific constraints of area and volume. Output of the Backup Concept is estimated to be 60 kWe for a 10-year end of life. This system differs from the Baseline Concept because currently available thermoelectric conversion is used from energy supplied by a liquid sodium cooled reactor. The Growth Concept uses Stirling engine conversion to produce 100 kWe within the constraints of mass and volume. The Growth Concept can be scaled up to produce a 1 MWe output that uses the same type reactor developed for the Baseline Concept. Assessments made for each of the program scenarios indicate the key development efforts needed to initiate detailed design and hardware program phases. Development plans were prepared for each scenario that detail the work elements and show the program activities leading to a state of flight readiness.
Document ID
19860036000
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Katucki, R.
(General Electric Co. Philadelphia, PA, United States)
Josloff, A.
(General Electric Co. Philadelphia, PA, United States)
Kirpich, A.
(General Electric Co. Philadelphia, PA, United States)
Florio, F.
(General Electric Co., Space Systems Div., Valley Forge PA, United States)
Date Acquired
August 12, 2013
Publication Date
January 1, 1985
Subject Category
Spacecraft Propulsion And Power
Accession Number
86A20738
Funding Number(s)
CONTRACT_GRANT: JPL-956473
Distribution Limits
Public
Copyright
Other

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