Hydrogen explosion prevention system using SiC fuel cladding for large scale BWRs with inherently safe technologies

Author:

ISHIBASHI Ryo1,IKEGAWA Tomohiko1,NOSHITA Kenji1,KITOU Kazuaki1,KAMOSHIDA Mamoru1

Affiliation:

1. Center for Technology Innovation, Research & Development Group, Hitachi, Ltd.

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference10 articles.

1. Baker, L. and Just, L. C., Studies of metal-water reactions at high temperatures, III. Experimental and theoretical studies of the zirconium-water reaction, ANL-6548(1962).

2. Cathcart, J. V., Pawel, R. E., McKee, R. A., Druschel, R. E., Yurek, G. J., Campbell, J. J. and Jury, S. H., Zirconium metal-water oxidation kinetics IV. Reaction rate studies, ORNL/NUREG-17(1977).

3. IAEA, IAEA international fact finding expert mission of the Fukushima Dai-ichi NPP accident following the Great East Japan Earthquake and Tsunami, IAEA mission report, (2011), available from <http://www-pub.iaea.org/MTCD/meetings/PDFplus/2011/cn200/documentation/cn200_Final-Fukushima-Mission_Report.pdf>.

4. Investigation committee on the accident at the Fukushima Nuclear Power Station of Tokyo Electric Power Company, Final Report, Investigation committee on the accident at the Fukushima Nuclear Power Station of Tokyo Electric Power Company (2012) , available from <http://www.cas.go.jp/jp/seisaku/icanps/eng/final-report.html>.

5. Ishibashi, R., Ikegawa, T., Noshita, K., Kitou, K. and Kamoshida, M., Development of inherently safe technologies for large scale BWRs (4) Hydrogen explosion prevention system using SiC fuel claddings, Proceedings of International Conference on Nuclear Engineering (ICONE-22) (2014), paper No. ICONE22-31139.

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