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Volltext: Modelling of marine dispersion and transfer of radionuclides accidentally released from land based facilities

73 [33] KARCHER, M.J., HARMS, I.H., Estimation of water and ice ?uxes in the Arctic for an improved box structure of the NRPA box model, In: Iosjpe, M. (Ed.), Transport and Fate of Contaminants in the Northern Seas, Norwegian Radiation Protection Authority, NRPA, ?ster?s (2000). [34] NIES, H., GORONCY, I., HERRMANN, J., MICHEL, J., DARAOUI, A., GORNY, M., JAKOB, D., SACHSE, D., TOSCH, L., Kartierung von Tc-99, I-129 und I-127 im Ober?ächenwasser der Nordsee, Bericht zum Vorhaben StSch 4481, Bundesamt für Seeschi?fahrt und Hydrographie, Hamburg und Rostock (2009) (in German). [35] MICHEL, R., DARAOUI, A., GORNY M., JAKOB, D., SACHSE, R., TOSCH, L., NIES, H., GORONCY, I., HERRMANN, J., SYNAL, H.A., STOCKER, M., ALFIMOV, V., Iodine-129 and iodine-127 in European seawaters and in precipitation from Northern Germany. Science of the Total Environment 419 (2012) 151–169. [36] MONTE, L., BOYER, P., BRITTAIN, J.E., HAKANSON, L., LEPICARD, S., SMITH, J.T., Review and assessment of models for predicting the migration of radionuclides through rivers, Journal of Environmental Radioactivity 79 (2005) 273–296. [37] MONTE, L., HAKANSON, L., PERIÁ?EZ, R., LAPTEV, G., ZHELEZNYAK, M., MADERICH, V., KOSHEBUTSKY, V., Experiences from a case study of multi-model application to assess the behaviour of pollutants in the Dnieper-Bug estuary, Ecological Modelling 195 (2006) 247–263. [38] MONTE, L., Multi-model approach and evaluation of the uncertainty of model results, Rationale and applications to predict the behaviour of contaminants in the abiotic components of the fresh water environment, Ecological Modelling 220 (2009) 1469–1480. [39] IOSJPE, M., PERIÁ?EZ, R., Redissolution of cesium and plutonium from Irish Sea sediments: A comparison between di?erent modelling approaches, Radioprotection 40 (2005) 607–612. [40] TAKEMURA, T., NAKAMURA, H., TAKIGAWA, M., KONDO, H., SATOMURA. T., MIYASAKA, T., NAKAJIMA, T., A numerical simulation of global transport of atmospheric particles emitted from the Fukushima Daiichi Nuclear Power Plant, SOLA 7 (2011) 101–104. [41] KOBAYASHI, T., NAGAI, H., CHINO, M., KAWAMURA, H., Source term estimation of atmospheric release due to the Fukushima Daiichi Nuclear Power Plant accident by atmospheric and oceanic dispersion simulations, Journal of Nuclear Science and Technology 50 (2013) 255–264. [42] JAYNE, S.R., HOGG, N.G., WATERMAN, S.N., RAINVILLE, L., DONOHUE, K.A., RANDOLPH WATTS, D., TRACEY, K.L., MCCLEAN, J.L., MALTRUD, M.E., QIU, B., CHEN, S., The Kuroshio extension and its recirculation gyres, Deep Sea Research Part I, 56(12) (2009) 2088–2099. [43] KAWAMURA, H., KOBAYASHI, T., FURUNO, A., IN, T., ISHIKAWA, Y., NAKAYAMA, T., SHIMA, S., AWAJI, T., Preliminary numerical experiments on oceanic dispersion of 131I and 137Cs discharged into the ocean because of the Fukushima Daiichi nuclear power plant disaster, Journal of Nuclear Science and Technology 48 (2011) 1349–1356. [44] NAKANO, M., POVINEC, P., Long-term simulations of the 137Cs dispersion from the Fukushima accident in the world ocean, Journal of Environmental Radioactivity 111 (2012) 109-115.
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