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Nakamura, Hirofumi; Nagai, Toshihisa; Suto, Toshiyuki; Kosaka, Ichiro; Nakazaki, Katsutoshi; Suto, Shinya; Nakamura, Tomotaka; Nakabayashi, Hiroki; Hayashi, Naoto; Sumida, Daisaku
JAEA-Technology 2008-077, 276 Pages, 2008/12
Japan Atomic Energy Agency (JAEA) has been conducting "Fast Reactor Cycle Technology Development Project (FaCT Project)" for the purposes of researching and developing the technologies for the fast breeder reactor cycle commercialization since Japanese fiscal year (JFY) 2007. Based on the above R&D program for reprocessing system, the engineering-scale hot test would provide demonstration data on the specification, operation and maintenance of the adapted innovative technologies, system and plant. And more, these results would be fed to the design of the demonstration facility planning on the FaCT project road map. This report is the interim report of design studies about the engineering-scale hot test facility and includes not only design of the equipment and facility, but also consideration for design principle, requirements and facility basic planning.
Suto, Shinya; Nakabayashi, Hiroki; Yao, Kaoru*
JAEA-Technology 2007-029, 73 Pages, 2007/03
The cooling examination was executed by using the simulated fuel assembly to obtain the basic data of the most effective cooling system in the laser disassembling process of the spent fuel assembly of prototype fast breeder reactor "Monju". As a result, the following have been understood. (1) Before the laser disassembling (there is not any duct tube cutting), it is possible to cool enough by the amount of the wind of 20m/h or more flowing from the handling head side. (2) After the laser disassembling begins (duct tube is cut), 1kW or more of the heat generation cannot be cooled by ventilation from the handling head side. (3) Cooling by the flow across fuel pin is required during laser disassembling. The basic data of the cooling system was obtained from these examination results. However, for cooling across fuel pin during the laser disassembling, it is necessary to examine shape of the side cooling nozzle, spraying angle, and flow velocity at the nozzle exit, etc. enough.
Tamaoki, Tetsuo*; Yamamoto, Hiroki*; Sato, Masuo*; Yoshida, Megumi*; Kaneko, Tomoko*; Terunuma, Seiichi; Takatsuto, Hiroshi; Morimoto, Makoto
Nihon Genshiryoku Gakkai-Shi, 34(7), p.665 - 677, 1992/00
Times Cited Count:0 Percentile:0.01(Nuclear Science & Technology)None
Ishioka, Noriko; Watanabe, Shigeki; Suto, Hiroyuki*; Suzui, Nobuo; Matsuhashi, Shimpei; Iida, Yasuhiko*; Hanaoka, Hirofumi*; Yoshioka, Hiroki*; Endo, Keigo*
no journal, ,
no abstracts in English
Kawasaki, Michio*; Takisawa, Misato*; Kanehira, Saki*; Sakio, Mika*; Honda, Kazushige*; Islam, M. N.*; Suto, Hiroki*; Nozawa, Shigeki; Akita, Yusuke*; Narumi, Issei
no journal, ,
no abstracts in English
Kawasaki, Michio*; Hatta, Yuki*; Senda, Mineo*; Suto, Hiroki*; Nozawa, Shigeki; Akita, Yusuke*; Hase, Yoshihiro; Narumi, Issey*
no journal, ,
no abstracts in English