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Evaluation of consequences of the potential accidents in the Norwegian coastal waters

Published online by Cambridge University Press:  06 June 2009

M. Iosjpe
Affiliation:
Norwegian Radiation Protection Authority, PO Box 55, 1332 Østerås, Norway
O. Reistad
Affiliation:
Norwegian Radiation Protection Authority, PO Box 55, 1332 Østerås, Norway
I. Amundsen
Affiliation:
Norwegian Radiation Protection Authority, PO Box 55, 1332 Østerås, Norway
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Abstract

Potential accidents with modern operative nuclear submarine and with transport of spent nuclear fuel along the Norwegian coastal line have been under evaluation. Hypothetical release scenarios which include immediate discharge of release fraction and constant release of fuel corrosion products, were developed. Modelling work has been done using a compartment model developed at NRPA which includes the dispersion of radioactivity in marine regions, processes of water-sediment interactions and dose assessment modules. Collective dose-rates to man, concentration of radionuclides in biota/sea-foods and doses to marine organisms were calculated. Results from the calculation of concentrations of radionuclides in marine organisms as well as doses to man and biota are discussed.

Type
Research Article
Copyright
© EDP Sciences, 2009

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References

O. Reistad, M. Mærli and N. Bøhmer, The Nonproliferation Review 12 (2005), 163–197.
O. Reistad, R. Stamm'ler and K. Gussgard, Science and Global Security, submitted for publication February 4, 2008.
The Russian federal law concerning bringing of the supplement into federal law “Use of Atomic Energy” (in Russian), http://www.akdi.ru/gd/proekt/088017GD.SHTM (2002).
IPCC, (1996), Climate Change 1995: Impacts, Adaptations, and Mitigation of Climate Change: Scientific-Technical Analyses. Contribution of Working Group II to the Second Assessment Report for the Intergovernmental Panel on Climate Change [Watson, R.T., M.C. Zinyowera and R.H. Moss (eds.)]. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA.
T.L. Sanders, K.D. Seager, Y.R. Rashid, P.R. Barrett, A.P. Malinauskas, R.E. Einziger, H. Jordan and X. Duffey, A method for determining the spent-fuel contribution to transport cask containment requirements. SAND 90-2406. Albuquerque: Sandia National Laboratories (1992).
O. Reistad, M. Iosjpe, W. and S. Hustveit, Source term development and impact assessment of a hypothetical accident for a Russian nuclear submarine in the Barents Sea (2008). Provisional draft.
Severity, probability and risk of accidents during maritime transport of radioactive material, Final report of a coordinated research project 1995-99, IAEA-TECDOC-1231, Vienna: International Atomic Energy Agency, 2001.
Iosjpe, M., Brown, J. and Strand, P., J. Environ. Radioactivity, 60, 91103 (2002). CrossRef
M. Iosjpe, in Radionuclides in the Environment. edited by P.P. Povinec and J.A. Sanchez-Cabeza (Radioactivity in the Environment, 8, Series Editor: M.S. Baxter, 463–476, (2006).
Codex Alimentarius Commission: Joint FAO/WHO Food Standards Programme. Appendix XXXI. ftp://ftp.fao.org/codex/Alinorm06/al29_41e.pdf (09.01.07)
J.E. Brown, A. Hosseini, P. Børretzen and H. Thørring, Marinne Pollution Bulletin,~52, 1127–1137 (2006).