Zobrazeno 1 - 10
of 11
pro vyhledávání: '"Yoshio Watari"'
Autor:
Tomoko Murakami, Noboru Nakao, Yoshio Watari, Katsuyuki Kawashima, Masanori Miura, Masayoshi Ishida
Publikováno v:
Journal of the Atomic Energy Society of Japan / Atomic Energy Society of Japan. 37:327-337
Numerical simulation of an unprotected loss-of-flow( ULOF) accident has been performed for a large liquid-metal-cooled fast breeder reactor (LMFBR) equipped with gas expansion modules (GEMs) in the radial periphery of the reactor core. The effectiven
Publikováno v:
Electronics & Communications in Japan. 102:67-73
Presentation d'une methode de calcul de la repartition des ecoulements du metal liquide dans le cœur d'un surregenerateur en vue de minimiser les temperatures des points chauds des gaines de combustible. Application a deux types de surregenerateurs
Publikováno v:
Nuclear Technology. 63:215-227
One type of axially heterogeneous core concept for liquid-metal fast breeder reactors has been developed in which a disk-shaped internal blanket with its thickness radially changed is introduced at the driver core midplane except for a few outside ro
Autor:
Yoshio Watari
Publikováno v:
Journal of the Atomic Energy Society of Japan / Atomic Energy Society of Japan. 29:913-928
With the aim of reducing the fuel cycle cost of LMFBRs, the high burnup and long operating cycle core concept has been studied and optimized for a large LMFBR.The power shape for the high burnup core is found to be more flattened by dividing the core
Autor:
Yoshio Watari, Takanobu Kamei, Hirotaka Yoshimi, Hiroshi Nakagawa, Tatsutoshi Inagaki, Keisho Shirakata, Masao Suzuki, Kotaro Inoue
Publikováno v:
Nuclear Science and Engineering. 100:283-295
The current status of axial heterogeneous core (AHC) design development in Japan, which consists of an AHC core design in a pool-type demonstration fast breeder reactor (DFBR) and research and development activities supporting AHC core design, is pre
Autor:
Yoshio Watari
Publikováno v:
Nuclear Science and Engineering. 103:166-181
The reactor physics problems in core designs for high-burnup and long-operating-cycle length are clarified. Two core concepts are proposed to deal with these problems: the advanced homogeneous core (A-HOC) in which the power distribution is flattened
Autor:
M. Broc, J. Sannier, G. Santarini, Walter Seifritz, Kotaro Inoue, Kazuo Azekura, Katsuyuki Kawashima, Setsuo Kobayashi, Yoshio Watari, Milton H. Campbell, R. E. Tomlinson, Roy Nilson, R. F. Williams, Robert E. Brooksbank, Ray O. Sandberg, J. Novak, Ian J. Hastings, Elio Mizzan, Real J. Chenier, Arnold Friedman, Sherman Fried, Nicholas J. Susak, J. C. Sullivan, Everett L. Childs, John R. Winkel, Michael P. Manahan, Yasuo Motoki, Mitsuo Naritomi, Mitsugu Tanaka, Gunji Nishio, Kazuichiro Hashimoto, Susumu Kitani, Werner Maschek, Margaret W. Asprey, Yutaka Kukita, Ken Namatame, Isao Takeshita, Masayoshi Shiba, Edward T. Tomlinson, C. L. Brown
Publikováno v:
Nuclear Technology. 63:189-195
Publikováno v:
IEEJ Transactions on Power and Energy. 102:747-752
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Akademický článek
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