Effect of Nuclear Fuel Particle Movement on Nuclear Criticality in a Rotating Cylindrical Vessel
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概要
- 論文の詳細を見る
In conventional criticality safety evaluations of nuclear facilities, nuclear fuel particle behavior could not be considered because any appropriate computational tools did not be developed. A new criticality evaluation tool, which can consider the particle behavior, is developed by coupling a Discrete Element Method with a continuous energy Monte Carlo type code. Criticality evaluations considering the nuclear particle movement in a rotating cylindrical tank are performed by applying this tool. Effects of the powder-filling ratio and the rotating speed on nuclear criticality are investigated in the present study. The nuclear powder free surface is fluctuated more remarkably as the filling ratio and the rotating speed are higher. The fluctuation makes the effective multiplication factor lower because of neutron leakage from the system by the increase of the superficial area and reduction of the atomic number densities due to the flowability.
- 一般社団法人 日本原子力学会の論文
- 2005-03-25
著者
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Sakai Mikio
Department Of Cardiology Kyoto National Hospital
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Sakai Mikio
Department Of Quantum Engineering And Systems Science Graduate School Of Engineering University Of T
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Koshizuka Seiichi
Department Of Quantum Engineering And Systems Science Graduate School Of Engineering University Of T
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Koshizuka Seiichi
Department Of Quantum Engineering And System Science Graduate School Of Engineering The University O
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Shibata Kazuya
Department Of Quantum Engineering And Systems Science Graduate School Of Engineering University Of T
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Shibata Kazuya
Department Of Quantum Engineering And System Science Graduate School Of Engineering The University O
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