Rchr
J-GLOBAL ID:202001011254585660
Update date: Oct. 09, 2024
ITOUYAMA NOBORU
イトウヤマ ノボル | ITOUYAMA NOBORU
Affiliation and department:
Research field (6):
Analytical chemistry
, Thermal engineering
, Safety engineering
, Energy chemistry
, Chemical reaction and process system engineering
, Aerospace engineering
Research keywords (7):
流体力学
, Satefy engineering
, Catalyst engineering
, Combustion engineering
, Propulsion engineering
, Reaction engineering
, Analytical chemistry
Research theme for competitive and other funds (8):
- 2023 - 2030 Detonation Engine Physics Elucidation: International Joint Research on Space Flight Demonstration
- 2023 - 2028 Dynamic and Liquid Propellant Rotating Detonation Engine Physics Elucidation: Ballistic and Orbital Flight Demonstration
- 2023 - 2027 Studyon a Pressure Gain Mechanisum by a Premixed Rotating Detonation Engine
- 2022 - 2025 Invetigation for scientific principle the laser-assisted radiant heating ignition of high-enegy monopropellants
- 2020 - 2022 Investigation of the detonability of high energy density materials and its-based propellants
- 2020 - 将来深宇宙探査に向けた革新的超小型推進システム技術実証RG
- 2020 - Fundamental study on the catalytic ignition of low-toxicity and high performance monopropellants driven by laser radiation
- 2018 - 2020 Investigation of Ignition Mechanism and Control of Ignition Delay of Ionic Liquid Propellant Based on High Energy Salt
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Papers (56):
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Rinpei Sakata, Masahiro Inada, Noboru Itouyama, Ken Matsuoka, Jiro Kasahara, Akira Kawasaki, Akiko Matsuo, Ikkoh Funaki. Synchronized Initiation of Two Cylindrical Rotating Detonation Engines. Journal of Propulsion and Power. 2024. 1-10
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Kazuki Ishihara, Tomoki Sato, Tomoaki Kimura, Kosuke Nakajima, Kotaro Nakata, Noboru Itouyama, Akira Kawasaki, Ken Matsuoka, Koichi Matsuyama, Jiro Kasahara, et al. Nitrous Oxide/Ethanol Cylindrical Rotating Detonation Engine for Sounding Rocket Space Flight. Journal of Spacecraft and Rockets. 2024. 1-11
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T. Sato, K. Nakata, K. Ishihara, N. Itouyama, K. Matsuoka, J. Kasahara, A. Kawasaki, D. Nakata, H. Eguchi, M. Uchiumi, et al. Combustion Structure of a Cylindrical Rotating Detonation Engine with Liquid Ethanol and Nitrous Oxide. Combustion and Flame. 2024
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K. Nakajima, K. Matsuoka, N. Itouyama, J. Kasahara, A. Kawasaki, A. Matsuo. Effect of Channel Expansion Angle near Injector Outlet on a Rotating Detonation Engine Performance. Shock Waves. 2024
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Kosuke Nakajima, Takufumi Sawada, Ken Matsuoka, Noboru Itouyama, Jiro Kasahara, Akira Kawasaki, Akiko Matsuo. Visualization and thrust measurement of rotating detonation engine with various channel expansion angles. Proceedings of the Combustion Institute. 2024. 40. 1-4. 105577-105577
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MISC (103):
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井上晴菜, 川崎央, 永岡祐, 伊東山登, 松岡健, 笠原次郎, 松尾亜紀子, 船木一幸. 反射往復デトネーション燃焼器における不均一混合気中を伝播するデトネー ション波の挙動に関する可視化実験. 第63回航空原動機・宇宙推進講演会. 2024. 3D06
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佐田拓巳, 松尾亜紀子, 嶋英志, 伊東山登, 川﨑央, 松岡健, 笠原次郎. 拡大流路を持つ単円筒回転デトネーションエンジンの数値解析. 2023年度衝撃波シンポジウム. 2024. 2C2-1
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西田響喜, 伊東山登, 中田耕太郎, 川﨑央, 松岡健, 笠原次郎. 可燃性固体内壁を有する単円筒回転デトネーションエンジンの作動特性. 2023年度衝撃波シンポジウム. 2024. 2C1-4
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小山雄太郎, 須藤直太郎, 松岡健, 伊東山登, 川﨑央, 渡部広吾輝, 笠原次郎. 予混合気回転デトネーションエンジン作動に向けた多孔質インジェクタの基礎研究. 2023年度衝撃波シンポジウム. 2024. 2C1-3
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永岡佑, 松岡健, 伊東山登, 川﨑央, 渡部広吾輝, 笠原次郎, 松尾亜紀子. 反射往復デトネーション燃焼器のシュリーレン光学可視化研究. 2023年度衝撃波シンポジウム. 2024. 2C3-2
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Patents (4):
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Low gas generator
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噴射装置及び推進システム
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噴射装置及び推進システム
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低温ガス発生剤
Lectures and oral presentations (62):
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Effect of Injector Expansion Angle on a Rotating Detonation Engine Performance
(29th International Colloquium on the Dynamics of Explosions and Reactive Systems (ICDERS 2023) 2024)
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Numerical Investigation on Throatless Diverging Rotating Detonation Engines
(AIAA Scitech 2024 2024)
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Combustion Characteristics of Reflective Shuttling Detonation Combustor with Different Equivalence Ratio
(AIAA SciTech 2024 2024)
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Experimental research for clustering with the coupled cylindrical rotating detonation engine
(AIAA Scitech 2024 2024)
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A Bread Board Model Testing for In-Space Flight Demonstration of a Liquid-Propellant Detonation Engine System
(AIAA Scitech 2024 2024)
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Works (6):
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観測ロケットを用いたデトネーションエンジンの宇宙実証
2020 - 現在
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Palm-size high propulsion-density system
2016 - 現在
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High-energy-density ionic liquid propellant
2016 - 現在
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Green Propulsion with HEDMs
2014 - 現在
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気相燃焼および気相爆轟の化学的制御法の探索
more...
Education (3):
- 2016 - 2020 The University of Tokyo The Graduate School of Engineering Department of Chemical System Engineering
- 2014 - 2016 The University of Tokyo The Graduate School of Engineering Department of Chemical System Engineering
- 2009 - 2014 Kyushu University School of Engineering Department of Materials Science and Engineering
Work history (4):
- 2023/04 - 現在 名古屋大学 工学系研究科 航空宇宙工学専攻 助教
- 2023/04 - 現在 名古屋大学 未来材料・システム研究所 システム創成部門 助教
- 2020/04 - 2023/03 Nagoya University Institute of Materials and Systems for Sustainability Division of Systems Reserch
- 2018/04 - 2020/03 Japan Society for the Promotion of Science Research Fellowship for Young Scientist
Awards (9):
- 2023/01 - 2022 AIAA Pressure Gain Combustion Best Paper Award Flight Demonstration of Detonation EngineSystem Using Sounding Rocket S-520-31: Performance of Rotating Detonation Engine
- 2022/11 - 火薬学会 火薬学会秋季講演会 優秀講演賞 高エネルギイオン液体のレーザ着火を応用したスラスタ概念と基礎作動特性
- 2022/06 - 一般社団法人火薬学会 火薬学会 2022年度春季研究発表会 優秀講演賞 レーザ輻射加熱による高エネルギーイオン液体推進薬の点火特性評価
- 2021/12 - 日本燃焼学会 2021年『美しい炎』の写真展 最優秀作品賞 世界初!デトネーションエンジン宇宙実証
- 2020/12 - 日本燃焼学会 2020年 『美しい炎』の写真展 最優秀作品賞 デトネーションエンジン宇宙へ(Detonation Engine to Space)
- 2019/05 - Japan Explosive Society Japan Explosive Society Award Investigation for real-time analysis of HAN-decomposed gas with/without Ir-based catalyst by MPI/TOF-MS
- 2017/11 - Japan Explosive Society Best Poster Award on The 6th International Symposium on Energetic Materials and their Applications (ISEM2017)
- 2017/05 - Japan Explosive Society Best Presentation Award on the 2017's conference of JES Evaluation of direct ignition energy input method to electric conductive liquid propellant
- 2015/12 - Japan Explosive Society Best Presentation Award on the 2015's conference of JES Investigation for combustion characteristic of hydroxylamine nitrate
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Association Membership(s) (5):
American institute of aeronautics and astronautics
, 日本航空宇宙学会
, 日本燃焼学会
, Japan Explosive Society
, 日本分析化学会
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