A Strategy Analysis of the Fast Breeder Reactor Introduction and Nuclear Fuel Cycle Systems Deployment

A study is made on a strategy analysis of the long term nuclear fuel cycle systems deployment in accordance with the nuclear power growth projection and fast breeder reactor (FBR) introduction. In the analysis, thereprocessed plutonium (Pu) is charged into the reactor in such a way that the reproces...

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Veröffentlicht in:Journal of the Atomic Energy Society of Japan / Atomic Energy Society of Japan 1996/02/29, Vol.38(2), pp.133-142
Hauptverfasser: WAJIMA, Tsunetaka, KAWASHIMA, Katsuyuki, YAMASHITA, Takashi
Format: Artikel
Sprache:jpn
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Zusammenfassung:A study is made on a strategy analysis of the long term nuclear fuel cycle systems deployment in accordance with the nuclear power growth projection and fast breeder reactor (FBR) introduction. In the analysis, thereprocessed plutonium (Pu) is charged into the reactor in such a way that the reprocessed Pu is not stored outside the reactor, i.e., there is no excess Pu outside the reactor. The analysis characterized the fuel cycle systems, and showed the usefulness of the present method to determine future directions for the FBR introduction and nuclear fuel cycle systems deployment. Concerning an intermediate-term strategy, the time of introduction and required capacities of a second commercial LWR reprocessing plant, Pu-thermal, and the first FBR reprocessing plant deployment are evaluated. A long term strategy analysis shows that the two or three large plants are run in parallel for each fuel cycle facility and that FBR related facilities deal with a markedly large amount of Pu. It is concluded that the early stage introduction of FBRs of significant capacities seems necessary to materialize a consistent total FBR/fuel cycle system where Pu balance becomes feasible through its flexible operation of, for instance, adjusting breeding ratio, in order to keep the transparency of the Pu utilization.
ISSN:0004-7120
2186-5256
DOI:10.3327/jaesj.38.133