28-30 November 2019
C-CUBE, Kyushu University Chikushi Campus 九州大学筑紫キャンパス総合研究棟 (C-Cube)
Asia/Tokyo timezone
- snd2019@cabas.kyushu-u.ac.jp
Contact 連絡先
Reactor Physics 炉物理
Place
Location: C-CUBE, Kyushu University Chikushi Campus 九州大学筑紫キャンパス総合研究棟 (C-Cube)
Address: 6-1, Kasuga-koen, Kasuga, Fukuoka, 816-8580, Japan 福岡県春日春日公園6-1
Room: Chikushi Hall 筑紫ホール
Date:
29 Nov 09:30 - 11:00
Conveners
-
- Prof. Chiba, Go (Hokkaido University)
Timetable | Contribution List
Displaying 3
contributions
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3
To start up an initial fusion reactor and for technical tests for tritium circulation and blanket system, it is necessary to provide sufficient amount of tritium from an outside device. We have proposed tritium production using a high temperature gas-cooled reactor [1,2]. The gas turbine high-temperature reactor of 300MWe nominal capacity (GTHTR300) [3] and high temperature engineering test
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Presented by Dr. Hideaki MATSUURA
on
29/11/2019
at
1:00
Recently, HTGR attracts a particular attention due to the outstanding safety features especially after the Fukushima Daiichi nuclear disaster, and the R&D is significantly promoted. In this presentation, we introduce the R&D plan of HTGR and the activities related to relating reactor physics and nuclear data including an experiment by using KUCA. Furthermore, requirement for nuclear data to the HT
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Presented by Dr. Yuji FUKAYA
on
29/11/2019
at
0:30
Transmutation of long-lived fission products (LLFPs: $^{79}$Se, $^{93}$Zr, $^{99}$Tc, $^{107}$Pd, $^{129}$I, and $^{135}$Cs) into short-lived or non-radioactive nuclides by fast reactors without isotope separation nor even-odd separation has been proposed as a solution to the problem of radioactive wastes disposal[1,2]. Despite investigation of many methods, such transmutation remains technologica
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Presented by Prof. Satoshi CHIBA
on
29/11/2019
at
1:30