Journal of Power and Energy Systems
Online ISSN : 1881-3062
ISSN-L : 1881-3062
Papers(Special Issue)
Advanced Recycling Core Accommodating Oxide Fuel and Metal Fuel for Closed Fuel Cycle
Kazumi IKEDAJames W. MADDOXWataru NAKAZATOShigeru KUNISHIMA
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2010 Volume 4 Issue 1 Pages 234-243

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Abstract
This report presents a unique TRU burning core capable of accommodating oxide fuel and metal fuel and easy to change oxide core to metal core conforming to the design requirements. For the homogeneous oxide fueled core containing transuranics (TRU) fuel with 12% of the moderator pins, the results of calculation show the TRU conversion ratio (ratio of loss of TRU to loss of heavy metal) of 0.33 and the TRU burning capability (ratio of loss of TRU per electric generation) of 67 kg/TWeh. On the other hand, the calculations replacing from oxide fuel assemblies to metal fuel assemblies have indicated the TRU transmutation capability of 69 kg/TWeh with the TRU conversion ratio of 0.30. As the result of simulation calculations, three ordinary fuel exchanges transform the oxide equilibrium core to the full metal core by way of transitional cores, where the maximum linear heat rates are still equal to the metal equilibrium core or less. With this, the presented core concept is concluded that a full oxide core, a full metal core, mixed fueled cores can be materialized in the presented first unit of Advanced Recycling Reactor (ARR1).
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© 2010 by The Japan Society of Mechanical Engineers
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