Rchr
J-GLOBAL ID:202101000868991554   Update date: Jan. 30, 2024

Goto Minoru

ゴトウ ミノル | Goto Minoru
Affiliation and department:
Job title: Associate Professor
Research field  (1): Nuclear engineering
Research theme for competitive and other funds  (6):
  • 2021 - 2024 Design and production of tritium production test modules for irradiation test using High Temperature engineering Test Reactor
  • 2015 - 2018 Development of Li-loading rod of high-temperature gas-cooled reactor for tritium production
  • 2013 - 2015 Development of effective lithium loading method into high-temperature gas-cooled reactor for tritium poroduction
  • 2011 - 2012 Study on tritium production for fusion reactors using high-temperature gas-cooled reactor
  • 核融合炉用トリチウム燃料供給源としての高温ガス炉の研究
Show all
Papers (74):
  • Okita Shoichiro, Mizuta Naoki, Takamatsu Kuniyoshi, Goto Minoru, Yoshida Katsumi*, Nishimura Yosuke*, Okamoto Koji*. Research on improvement of HTGR core power-density, 4; Feasibility study for a reactor core. Proceedings of 30th International Conference on Nuclear Engineering (ICONE30) (Internet). 2023. 10
  • Fukaya Yuji, Goto Minoru, Ohashi Hirofumi. Feasibility study on reprocessing of HTGR spent fuel by existing PUREX plant and technology. Annals of Nuclear Energy. 2023. 181. 109534\_1-109534\_10
  • Fukaya Yuji, Okita Shoichiro, Sasaki Koei, Ueta Shohei, Goto Minoru, Ohashi Hirofumi, Yan X. Study on evaluation method of kernel migration of TRISO fuel for High Temperature Gas-cooled Reactor. Nuclear Engineering and Design. 2022. 399. 112033\_1-112033\_9
  • Ho H. Q., Ishii Toshiaki, Nagasumi Satoru, Ono Masato, Shimazaki Yosuke, Ishitsuka Etsuo, Goto Minoru, Simanullang I. L.*, Fujimoto Nozomu*, Iigaki Kazuhiko. Calculation of shutdown gamma distribution in the high temperature engineering test reactor. Nuclear Engineering and Design. 2022. 396. 111913\_1-111913\_9
  • Fukaya Yuji, Ohashi Hirofumi, Sato Hiroyuki, Goto Minoru, Kunitomi Kazuhiko. Re-evaluation of electricity generation cost of HTGR. Nihon Genshiryoku Gakkai Wabun Rombunshi. 2022. 21. 2. 116-126
more...
MISC (33):
  • Fukaya Yuji, Maruyama Takahiro, Goto Minoru, Ohashi Hirofumi, Higuchi Hideaki. Study on disposal of waste from reprocessing for commercial HTGR spent fuel. JAEA-Research 2023-002. 2023. 19
  • Takeda Tetsuaki*, Inagaki Yoshiyuki, Aihara Jun, Aoki Takeshi, Fujiwara Yusuke, Fukaya Yuji, Goto Minoru, Ho H. Q., Iigaki Kazuhiko, Imai Yoshiyuki, et al. High temperature gas-cooled reactors. High Temperature Gas-Cooled Reactors; JSME Series in Thermal and Nuclear Power Generation, Vol.5. 2021. 464
  • Fukaya Yuji, Goto Minoru, Nakagawa Shigeaki. Recent R\&D of HTGR and requirement for nuclear data. JAEA-Conf 2020-001. 2020. 27-32
  • Mineo Hideaki, Nishihara Tetsuo, Ohashi Hirofumi, Goto Minoru, Sato Hiroyuki, Takegami Hiroaki. Research and development activities of JAEA for HTGR system realization. Nihon Genshiryoku Gakkai-Shi ATOMO$\Sigma. 2020. 62. 9. 504-508
  • Aihara Jun, Goto Minoru, Ueta Shohei, Tachibana Yukio. Code-B-2.5.2 for stress calculation for SiC-TRISO fuel particle. JAEA-Data/Code 2019-018. 2020. 2019-018. 22
more...
Patents (1):
  • 使用済核燃料の再処理システムおよび再処理方法
Lectures and oral presentations  (78):
  • High-temperature operation mode of HTTR for hydrogen production facility
    (30th International Conference on Nuclear Engineering (ICONE30))
  • Study on T production using high-temperature gas-cooled reactor for fusion reactors, 4; Feasibility study on irradiation test for tritium production capsule
    (日本原子力学会2023年春の年会)
  • Prediction of the operating control rod position of the HTTR with supervised machine learning
    (29th International Conference on Nuclear Engineering; Nuclear Energy the Future Zero Carbon Power (ICONE 29))
  • Calculation of control rods position for restarting the high temperature engineering test reactor
    (10th International Topical Meeting on High Temperature Reactor Technology (HTR 2021))
  • Calculation of decay gamma spectrum of the HTTR after shutdown
    (日本原子力学会2021年春の年会)
more...
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page