Rchr
J-GLOBAL ID:202101000004296579   Update date: Dec. 22, 2023

Sumita Junya

スミタ ジユンヤ | Sumita Junya
Affiliation and department:
Papers (46):
  • Kamide Hideki, Kawasaki Nobuchika, Hayafune Hiroki, Kubo Shigenobu, Chikazawa Yoshitaka, Maeda Seiichiro, Sagayama Yutaka, Nishihara Tetsuo, Sumita Junya, Shibata Taiju, et al. New market opened up by advanced nuclear reactors (Chapter 3, 4, 5, 7). Jisedai Genshiro Ga Hiraku Atarashii Shijo; NSA/Commentaries, No.28. 2023. 14-36
  • Humrickhouse P. W.*, Sato Hiroyuki, Imai Yoshiyuki, Sumita Junya, Yan X. RELAP5 modeling of the HTTR-GT/H$_{2}$ secondary system and turbomachinery. Proceedings of 9th International Topical Meeting on High Temperature Reactor Technology (HTR 2018) (USB Flash Drive). 2018. 9
  • Shibata Taiju, Mizuta Naoki, Sumita Junya, Sakaba Nariaki, Osaki Takashi*, Kato Hideki*, Izawa Shoichi*, Muto Takenori*, Gizatulin S.*, Shaimerdenov A.*, et al. Post irradiation experiment about SiC-coated oxidation-resistant graphite for high temperature gas-cooled reactor. Proceedings of 9th International Topical Meeting on High Temperature Reactor Technology (HTR 2018) (USB Flash Drive). 2018. 7
  • Yan X., Sato Hiroyuki, Sumita Junya, Nomoto Yasunobu*, Horii Shoichi*, Imai Yoshiyuki, Kasahara Seiji, Suzuki Koichi*, Iwatsuki Jin, Terada Atsuhiko, et al. Design of HTTR-GT/H$_{2}$ test plant. Nuclear Engineering and Design. 2018. 329. 223-233
  • Sato Hiroyuki, Nomoto Yasunobu*, Horii Shoichi*, Sumita Junya, Yan X. HTTR-GT/H$_{2}$ test plant; System performance evaluation for HTTR gas turbine cogeneration plant. Nuclear Engineering and Design. 2018. 329. 247-254
more...
MISC (43):
  • Shinohara Masanori, Sumita Junya, Inaba Yoshitomo, Shibata Taiju. Research and development for commercialization of high temperature gas-cooled reactors; Contribution to carbon neutrality. Dai-59-Kai X Sen Zairyo Kyodo Ni Kansuru Toronkai Koen Rombunshu. 2022. 22-28
  • Shinohara Masanori, Sumita Junya, Shibata Taiju, Hirata Masaru. Assessment report on research and development activities in post-evaluation of third medium-/long-term plan and in pre-evaluation of the fourth medium-/long-term plan on "Research and Development on High Temperature Gas-cooled Reactor and Related Heat Application Technology". JAEA-Evaluation 2022-006. 2022. 198
  • Matsuba Kenichi, Shinohara Masanori, Toyooka Junichi, Inaba Yoshitomo, Sumita Junya. Development trends of small modular reactors and approaches of Japan Atomic Energy Agency to advanced reactor development. Enerugi, Shigen. 2022. 43. 4. 218-223
  • Shinohara Masanori, Sumita Junya, Shibata Taiju, Hirata Masaru. Assessment report on research and development activities in FY2020 activity and in prospective evaluation of third mid-to long-term plan "Research and development on high temperature gas-cooled reactor and related heat application technology". JAEA-Evaluation 2022-001. 2022. 104
  • 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
more...
Lectures and oral presentations  (43):
  • JSME Series in Thermal and Nuclear Power Generation Vol. 5; HTGR, 2; Development of HTGR demonstration reactor based on Japanese HTGR technology
    (日本機械学会第27回動力・エネルギー技術シンポジウム)
  • International technological development on nuclear energy; R\&D on HTGR, heat utilization and hydrogen
    (エンジニアリング協会2022年度第4回国際協力委員会)
  • Outline of HTGR, HTGR technology and design
    (1st Seminar on Development of HTGR Technology for Cogeneration and Heat Applications)
  • Consideration of the hot pressing conditions of the high-strength fuel compact for high-temperature gas-cooled reactor
    (日本原子力学会2016年秋の大会)
  • Collaboration with Republic of Kazakhstan regarding irradiation performance of HTGR fuel
    (日本原子力学会2016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