Burnup Importance Function Introduced to Give an Insight into the End Effect

Author:

Okuno Hiroshi1,Sakai Tomohiro2

Affiliation:

1. Japan Atomic Energy Research Institute, Tokai-mura Naka-gun, Ibaraki-ken, 319-1195, Japan

2. The Japan Research Institute, Ltd., 1-4-17 Misakicho Chiyoda-ku, Tokyo, 101-0062, Japan

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference22 articles.

1. M. TAKANO, “OECD/NEA Burnup Credit Criticality Benchmark—Result of Phase-1A,” NEA/NSC/DOC(93)22, JAERI-M 94-003, Japan Atomic Energy Research Institute (1994).

2. M. D. DeHART, M. C. BRADY, and C. V. PARKS, “OECD/NEA Burnup Credit Criticality Benchmark Phase I-B,” NEA/NSC/DOC(96)06, ORNL-6901, Oak Ridge National Laboratory (1996).

3. M. TAKANO and H. OKUNO, “OECD/NEA Burnup Credit Criticality Benchmark—Result of Phase IIA,” NEA/NSC/DOC(96)01, JAERI-Research 96-003, Japan Atomic Energy Research Institute (1996).

4. A. NOURI, “OECD/NEA Burnup Credit Criticality Benchmark, Analysis of Phase II-B Results: Conceptual PWR Spent Fuel Transportation Cask,” NEA/NSC/DOC(98)1, Rapport IPSN/98-05, Institute for Protection and Nuclear Safety (1998).

5. J. C. NEUBER and T. LAMPRECT, “Proposal for Phase II-C: Benchmark on the Reactivity Effect of Axial Burnup Shapes,” WPNCS BUC, Paris, France, September 2000.

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