Tatsumi Masahiro | Nuclear Fuel Industries Ltd.
スポンサーリンク
概要
関連著者
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Tatsumi Masahiro
Nuclear Fuel Industries Ltd.
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TATSUMI Masahiro
Nuclear Fuel Industries, Ltd.
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Yamamoto Akio
Nagoya Institute Of Technology
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YAMAMOTO Akio
Nagoya University
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YAMANE Yoshihiro
Nagoya University
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KITAMURA Yasunori
Nagoya University
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Yamane Yoshihiro
Physics And Energy Engineering Department Of Materials Graduate School Of Engineering Nagoya Univers
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Yamamoto Akio
Physics And Energy Engineering Department Of Materials Graduate School Of Engineering Nagoya Univers
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山根 義宏
名古屋大学
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Yamane Yoshihiro
Department Of Materials Physics And Energy Engineering Nagoya University
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TAKEDA Toshikazu
Department of Urology, Keio University School of Medicine
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YAMASAKI Masatoshi
Nuclear Fuel Industries, Ltd.
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KITADA Takanori
Department of Sustainable Energy and Environmental Engineering, Graduate School of Engineering, Osak
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Yamane Yoshihiro
Department Of Nuclear Engineering Nagoya University
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Takeda Toshikazu
Department Of Nuclear Engineering Graduate School Of Engineering Osaka University
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Yamamoto Akio
Department Of Materials Physics And Energy Engineering Nagoya University
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Sugimura Naoki
Nuclear Engineering Ltd.
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Sugimura Naoki
Nuclear Engineering Limited
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YAMAMOTO Akio
Nuclear Fuel Industries, Ltd.
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Kitada Takanori
Department Of Nuclear Engineering Graduate School Of Engineering
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Takeda T
Department Of Nuclear Engineering Graduate School Of Engineering
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Kitamura Yasunori
Department Of Materials Physics And Energy Engineering Nagoya University
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Yamasaki Masatoshi
Nuclear Fuel Industries Ltd.
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Yamamoto Akio
Nuclear Fuel Industries Ltd.
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Takeda Toshikazu
Department of Nuclear Energy, Graduate School of Engineering, Osaka University
著作論文
- Improvement of the SPH Method for Pin-by-Pin Core Calculations
- Sensitivity Analysis for Multiplication Factor Change of LWR Cell Caused by the Differences between JENDL-3.2 and JENDL-3.3
- Improvement of Spatial Discretization Error on the Semi-analytic Nodal Method Using the Scattered Source Subtraction Method
- Advanced PWR Core Calculation Based on Multi-group Nodal-transport Method in Three-dimensional Pin-by-Pin Geometry
- Numerical Solution of Stiff Burnup Equation with Short Half Lived Nuclides by the Krylov Subspace Method
- Improvement of the SPH Method for Pin-by-Pin Core Calculations
- Advanced PWR Core Calculation Based on Multi-group Nodal-transport Method in Three-dimensional Pin-by-Pin Geometry