Temperatures and thermo-elastic stress in spherically symmetric fuel elements with varying material properties
dc.contributor.author | Binns, IM | en_AU |
dc.date.accessioned | 2007-11-22T04:30:42Z | en_AU |
dc.date.accessioned | 2010-04-30T04:40:34Z | en_AU |
dc.date.available | 2007-11-22T04:30:42Z | en_AU |
dc.date.available | 2010-04-30T04:40:34Z | en_AU |
dc.date.issued | 1967-02 | en_AU |
dc.description.abstract | In the thermo-elastic stress analysis of a spherically symmetric fuel element as used in a pebble bed reactor the problems of a radial variation in material properties and the temperature dependence of these properties can be unified into a single analysis. Such an analysis is developed for incorporation in a computer programme and applied, as an example, to a fuel element for a beryllia moderated reactor. The results give the effect of different material properties between surface and centre, a buffer layer between surface coating and centre, an increase in temperature of a fuel element composed of materials with different properties, and temperature dependance of the fuel element materials. | en_AU |
dc.identifier.citation | Binns, I. M. (1967). Temperature and thermoelastic stress in spherically symmetric fuel elements with varying material properties (AAEC/TM371). Lucas Heights, N.S.W.: Research Establishment, Australian Atomic Energy Commission. | en_AU |
dc.identifier.govdoc | 807 | en_AU |
dc.identifier.other | AAEC-TM-371 | en_AU |
dc.identifier.placeofpublication | Lucas Heights, New South Wales | en_AU |
dc.identifier.uri | http://apo.ansto.gov.au/dspace/handle/10238/797 | en_AU |
dc.language.iso | en_au | en_AU |
dc.publisher | Australian Atomic Energy Commission | en_AU |
dc.subject | Pebble bed reactors | en_AU |
dc.subject | Nuclear reaction analysis | en_AU |
dc.subject | Beryllium oxides | en_AU |
dc.subject | Fuel elements | en_AU |
dc.subject | Differential equations | en_AU |
dc.subject | Stress analysis | en_AU |
dc.title | Temperatures and thermo-elastic stress in spherically symmetric fuel elements with varying material properties | en_AU |
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