Kyoto University Graduate School of Energy Science, Department of Energy Science and Technology, Graduate School of Energy Science Department of Energy Science and Technology
About Kyoto University Graduate School of Energy Science, Department of Energy Science and Technology, Graduate School of Energy Science Department of Energy Science and Technology
Research keywords (4):
安定度
, 電力系統
, 超伝導応用電気機器
, Applied Superconductivity to energy system
Research theme for competitive and other funds (23):
2019 - 2022 Development of liquid hydrogen forced flow cooled CICC superconducting magnet
2016 - 2019 Dynamic modelling of distributed power system including active load and its application to stability analysis
2013 - 2016 Study of transient heat transfer phenomena of Liquid hydrogen for a high temperature superconducting device
2012 - 2015 洋上風力・潮力ハイブリッド発電システムとその系統連系特性
2012 - 2015 Online Evaluation of dynamic model of distribution system including dispersed generators and active loads.
2008 - 2010 Heat Transfer Characteristics of Liquid Hydrogen as Coolant for Superconducting Apparatus
2003 - 2005 Forced Convection Heat Transfer in Superfluid Helium at Pressures up to Supercritical
2001 - 2003 New Effective Application of SMES in Distributed Power System
2000 - 2001 Three dimensional heat transfer characteristics of superfluid helium and its mechanism
1997 - 1999 Studies on On-line Diagnosis of Electrical Power System
1994 - 1996 Application of Superconducting Magnet to Electric Power Systems
1994 - 1994 エネルギー転送回路を用いた超伝導発電機用励磁電源システムの検討
1990 - 1990 小容量超電導エネルギー貯蔵装置を用いた電力系統系統定数測定法の検討
1989 - 1989 超伝導の整流素子への応用に関する基礎的研究
1987 - 1988 Studies on Stability Monitoring and Control System for Synchronous Generators by ASPAC
1986 - 1987 Study on High Rsponse Excitation of Superconducting Generator
超電導マグネットの安定性
超伝導限流器の電力系統特性に関する研究
超伝導マグネット間エネルギー転送に関する研究
超伝導エネルギー貯蔵装置の電力系統応用に関する研究
Studies on Power System Characteristics of Superconducting Fault Current Limiter
Studies on Energy Transfer System Between Superconducting Magnets.
Studies on applications of Superconducting Magnetic Energy Storage(SMES)in Electrical Power Systems
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Papers (148):
Shinsaku Imagawa, Akifumi Iwamoto, Shinji Hamaguchi, Yasuyuki Shirai, Rikako Kawasaki, Hikaru Oya, Fumiya Matsumoto, Masahiro Shiotsu, Makoto Tsuda, Yoh Nagasaki, et al. Design, Fabrication and Soundness Test of A Bi2223 Magnet Designed for Cooling by Liquid Hydrogen. IEEE Transactions on Applied Superconductivity. 2022. 32. 6
Shintaro Hara, Yoshiki Iwami, Rikako Kawasaki, Taito Matsumoto, Yasuyuki Shirai, Masahiro Shiotsu, Hiroaki Kobayashi, Yoshihiro Naruo, Satoshi Nonaka, Yoshifumi Inatani, et al. Development of Liquid Hydrogen Cooling System for a Rotor of Superconducting Generator. IEEE Transactions on Applied Superconductivity. 2021. 31. 5
Prospect of Liquid Hydrogen Cooled Superconducting Power Apparatus and Carbon Free Energy System
(European Conference of Applied Superconductivity 2017 2017)
Output power control of hybrid off-shore-wind and tidal turbine generation system with battery storage system
(19th International Conference on Electrical Machines and Systems, ICEMS 2016 2017)
パワエレクトロニクス研究会
, The Institute of Electrical and Electronics Engineering
, 低温工学会
, 電気学会
, Japan Society for Power Electronics(JSPE)
, Cryogenic Association of Japan
, institute of Electrical Engineers of Japan (IEEJ)
, Institute of Electrical and Electronics Engineers(IEEE)