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AbstractAbstract
[en] A model has been developed for the practical purposes of reactor design showing gas release levels in the advanced gas reactor, temperature-sensitivity of gas release, and equiaxed grain growth. The model combines observations of fuel pin behaviour with a theoretical approach, and has been incorporated in the MINIPAT and SLEUTH fuel performance codes. Predictions from the model show excellent agreement with experimental observations. (author)
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Harris, J.E.; Sykes, E.C. (Central Electricity Generating Board, Berkeley (UK). Berkeley Nuclear Labs.) (eds.); p. 253-258; ISBN 0900497971;
; 1975; Metals Society; London; International conference on the physical metallurgy of reactor fuel elements; Berkeley, UK; 2 Sep 1973

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Book
Literature Type
Conference
Country of publication
ACTINIDE COMPOUNDS, AGR TYPE REACTORS, CARBON DIOXIDE COOLED REACTORS, CHALCOGENIDES, COMPUTER CODES, ENERGY SOURCES, ENRICHED URANIUM REACTORS, FUEL ELEMENTS, FUELS, GAS COOLED REACTORS, GRAPHITE MODERATED REACTORS, HEAVY WATER MODERATED REACTORS, OXIDES, OXYGEN COMPOUNDS, POWER REACTORS, PRESSURE TUBE REACTORS, REACTOR COMPONENTS, REACTOR MATERIALS, REACTORS, THERMAL REACTORS, URANIUM COMPOUNDS, URANIUM OXIDES, WATER COOLED REACTORS
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