Reactor Noise Experiments by Using Acquisition System for Time Series Data of Pulse Train
スポンサーリンク
概要
- 論文の詳細を見る
An acquisition system for the time series data of a pulse train was developed to perform the reactor noise experiments. Using this acquisition system, some important reactor kinetic parameters can be obtained by using various data analysis methods for the reactor noise experiments, which facilitates to achieve new experimental knowledge about characteristics of them proposed so far through direct comparison among the results of various methods. In the present study, the prompt neutron decay constant αp at two near delayed critical states of a core constructed in the Kyoto University Critical Assembly were measured by four well-known data analysis methods; the Feynman-α, the Rossi-α (Type-I and Type-II) and the frequency analysis methods. The results showed that αp values measured by the Type-I Rossi-α and the frequency analysis methods agreed with those by the Feynman-α method considering both effects of the delayed neutrons and the counting loss of neutron counter, whereas it was impossible to obtain the adequate αp values by the Type-II Rossi-α method. Moreover, it was demonstrated that one cannot neglect both effects for the measurement of αp by the Feynman-α method, whereas those by the Type-I Rossi-α and the frequency analysis methods hardly suffered.
- 社団法人 日本原子力学会の論文
- 1999-08-25
著者
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MATOBA Masaru
Department of Nuclear Engineering, Kyushu University
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Matoba Masaru
Department Of Applied Quantum Physics And Nuclear Engineering Graduate School Of Engineering Kyushu
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三澤 毅
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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SHIROYA Seiji
Research Reactor Institute, Kyoto University
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Shiroya S
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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Shiroya S
Nuclear Energy Science Division Reserch Ractor Institute Kyoto University
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Shiroya S
Research Reactor Institute Kyoto University
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Shiroya S
Kyoto Univ.
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MISAWA Tsuyoshi
Department of Nuclear Engineering, Nagoya University
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Shiroya S
Kyoto Univ. Osaka
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Shiroya Seiji
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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Shiroya Seiji
Research Reactor Institute Kyoto University
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Shiroya Seiji
Nuclear Energy Science Division Reserch Ractor Institute Kyoto University
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KITAMURA Yasunori
Department of Fundamental Energy Science, Graduate School of Energy Science, Kyoto University
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UNESAKI Hironobu
Department of Nuclear Energy Science, Research Reactor Institute, Kyoto University
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SHIROYA Seiji
Department of Nuclear Energy Science, Research Reactor Institute, Kyoto University
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Misawa Tsuyoshi
Department Of Nuclear Engineering Faculty Of Engineering Nagoya University
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Kitamura Yasunori
Nuclear Engineering Science Division Research Reactor Institute Kyoto University
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Kitamura Yasunori
Department Of Applied Biology Faculty Of Textile Science And Technology Shinshu University
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