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Tanaka, Shingo*; Yokota, Hideharu; Ono, Hirokazu; Nakayama, Masashi; Fujita, Tomoo; Takiya, Hiroaki*; Watanabe, Naoko*; Kozaki, Tamotsu*
Proceedings of 23rd International Conference on Nuclear Engineering (ICONE-23) (DVD-ROM), 6 Pages, 2015/05
Yabe, Takashi*; Utsumi, Takayuki*
Computational Fluid Dynamics Journal, 9(3), p.185 - 193, 2000/10
no abstracts in English
Takeda, Seiji; Kimura, Hideo; Moltyaner, G. L.*; Klukas, M. H.*
Proceedings of 7th International Conference on Radioactive Waste Management and Environmental Remediation (ICEM '99) (CD-ROM), 7 Pages, 1999/00
no abstracts in English
Klukas, M. H.*; Moltyaner, G. L.*; Takeda, Seiji; Yamazaki, L. S.*; Kozter, T. G.*
AECL-RC-2132, p.1 - 42, 1998/08
no abstracts in English
Yamazawa, Hiromi
Journal of Nuclear Science and Technology, 33(1), p.69 - 77, 1996/01
Times Cited Count:5 Percentile:45.11(Nuclear Science & Technology)no abstracts in English
Kimura, Hideo; Takahashi, Tomoyuki; ; Matsuzuru, Hideo
Journal of Nuclear Science and Technology, 32(3), p.206 - 217, 1995/03
Times Cited Count:4 Percentile:43.23(Nuclear Science & Technology)no abstracts in English
Kimura, Hideo
JAERI-M 92-115, 48 Pages, 1992/08
no abstracts in English
Iijima, Kazuki; Fujiwara, Kenso; Matoba, Daisuke*; Sasaki, Takayuki*
no journal, ,
Depth profiles of radionuclides discharged to the environment of Fukushima was obtained in the forest soil just nearby the Fukushima Daiichi Nuclear Power Station (FDNPS). According to characteristics of the depth profile, Pu-238 was originated from the FDNPS accident, while Pu-239+240 was mainly originated from global fallout. Comparing depth profiles attributed by the accident and global fallout can give understanding on the migration behavior of Pu in subsurface soil during decades. In this study, advection-dispersion model was applied to evaluate the depth profiles of Pu isotopes. The Kd values for global fallout Pu-239+240 agreed with those of Fukushima Pu-238 within around factor 3. Therefore, migration behavior of Pu could be understood by the advection-dispersion model.