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Matausek, M.V.; Plecas, I.; Marinkovic, N.
Abstracts and papers of the 1999 International RERTR Meeting1999
Abstracts and papers of the 1999 International RERTR Meeting1999
AbstractAbstract
[en] Main options are specified for the future status of the 6.5 MW heavy water research reactor RA. Arguments pro and contra restarting the reactor are presented. When considering the option to restart the RA reactor, possibilities to improve its neutronic parameters, such as neutron flux values and irradiation capabilities, are discussed, as well as the compliance with the worldwide activities of Reduced Enrichment for Research and Test Reactors (RERTR) program. Possibility of core conversion is examined. Detailed reactor physics design calculations are performed for different fuel types and uranium loading. For different fuel management schemes results are presented for the effective multiplication factor, power distribution, fuel burnup and consumption. It is shown that, as far as reactor core parameters are considered, conversion to lower enrichment fuel could be easily accomplished. However, conversion to the lower enrichment could only be justified if combined with improvement of some other reactor attributes. (author)
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Source
Argonne National Laboratory, 9700 S. Cass Avenue, Argonne, IL 60439 (United States); 26 Megabytes; Oct 1999; [8 p.]; 22. international meeting on Reduced Enrichment for Research and Test Reactors (RERTR); Budapest (Hungary); 3-8 Oct 1999; Also available online: http://www.td.anl.gov/Programs/RERTR/web1999/Abstracts/Program.htm; 8 refs, 3 figs, 3 tabs
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Report
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Conference
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ACTINIDES, COMPUTER CODES, DIFFERENTIAL EQUATIONS, DIFFUSION EQUATIONS, ELEMENTS, ENRICHED URANIUM, ENRICHED URANIUM REACTORS, EQUATIONS, HEAVY WATER COOLED REACTORS, HEAVY WATER MODERATED REACTORS, IRRADIATION REACTORS, ISOTOPE ENRICHED MATERIALS, ISOTOPE PRODUCTION REACTORS, MANAGEMENT, MATERIALS, METALS, NUCLEAR MATERIALS MANAGEMENT, PARTIAL DIFFERENTIAL EQUATIONS, REACTOR COMPONENTS, REACTORS, RESEARCH AND TEST REACTORS, RESEARCH REACTORS, START-UP, TANK TYPE REACTORS, THERMAL REACTORS, URANIUM
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