Niioka Takashi | Institute Of Fluid Science Tohoku University
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概要
関連著者
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Niioka Takashi
Institute Of Fluid Science Tohoku University
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KOBAYASHI Hideaki
Institute of Fluid Science, Tohoku University
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NIIOKA Takashi
Institute of Fluid Science, Tohoku University
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Kobayashi Hideaki
Institute Of Fluid Science Tohoku University
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Sato Yukinori
Ishikawajima Jet Service Co. Ltd.
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TOH Hidemi
Ishikawajima Harima Heavy Industries Co. Ltd.
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WATANABE Takeshi
Ishikawajima Harima Heavy Industries Co. Ltd.
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Maruta Kaoru
Institute Of Fluid Science Tohoku University
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JU Yiguang
Department of Mechanical and Aerospace Engineering, Princeton University
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Hasegawa Susumu
Institute Of Fluid Science Tohoku Univ.
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Ju Yiguang
Department Of Aeronautics And Space Engineering Tohoku University
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Niioka T
Tohoku Univ. Miyagi Jpn
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丸田 薫
東北大学流体科学研究所
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丸田 薫
東北大流体研
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Minato R
Muroran Inst. Technol. Muroran Jpn
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Kato Shinichiro
Institute For Chemical Research Kyoto University
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Kato Shinichiro
Institute Of Fluid Science Tohoku University
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Watanabe Hideto
Ebara Co. Ltd.
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丸田 薫
東北大 流体科研
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Ju Yiguang
Institute Of Fluid Science Tohoku University
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TAGASHIRA Takeshi
Ishikawajima Harima Heavy Industries Co., Ltd.
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Maruta Kaoru
Department of Science and Technology System, Akita Prefectural Univ.
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MARUTA Kaoru
Institute of Fluid Science, Tohoku University
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Maruta Kaoru
Department Of Mechanical Engineering Sophia University
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Abuliti Abudula
Faculty Of Science And Technology Hirosaki University
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MINATO Ryojiro
Subaru Research Center
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Mizuno Hiroyuki
Nissan Motor Co. Ltd.
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GUO Hongsheng
Institute of Fluid Science, Tohoku University
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Iika F
Faculty Of Science And Technology Hirosaki University
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TAKITA Kenichi
Graduate School, Yohoku University
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UCHIUMI Masaharu
Institute of Fluid Science, Tohoku University
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Tomohiro Denda
Institute of Fluid Science, Tohoku University
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Hanai Hironao
Institute of Fluid Science, Tohoku University
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Suzuki Minoru
Engineering Research Center, NKK Corporation
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RUAN Jiongming
Faculty of Science and Technology, Hirosaki University
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IIDA Fumio
Faculty of Science and Technology, Hirosaki University
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WANG Jingfu
Institute of Fluid Science, Tohoku University
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Tomohiro Denda
Institute Of Fluid Science Tohoku University
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Uchiumi Masaharu
Institute Of Fluid Science Tohoku University
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Hanai Hironao
Institute Of Fluid Science Tohoku University
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Guo Hongsheng
Department Of Aeronautics And Space Engineering Tohoku University:institute Of Fluid Science Tohoku
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Ruan Jiongming
Faculty Of Science And Technology Hirosaki University
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Tagashira Takeshi
Ishikawajima Harima Heavy Industries Co. Ltd.
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Wang Jingfu
Institute Of Fluid Science Tohoku University
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Takita K
Mitsubishi Heavy Ind. Ltd. Nagasaki Jpn
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Sato Jun'ichi
Ishikawajima-harima Heavy Industries Co. Ltd.
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Suzuki Minoru
Engineering Research Center Nkk Corporation
著作論文
- Numerical Study of NO_x Emission in High Temperature Air Combustion
- Experimental Study on Spray Characteristics of Prefilming Airblast Atomizer
- Influence of Combustor Inlet Conditions on Combustot Exit Gas Peak Temperature Factor (Experiment by using the Combustor with Pressure Atomizing Fuel Nozzles and the Combustor with Airblast Type Fuel Injectors)
- Study on the Correlation of the Altitude Ignition Parameter and Lightoff Air Fuel Ratio for Jet Engine Combustors
- B104 IGNITION TIMES OF n-DECANE DROPLET ARRAY IN HIGH-TEMPERATURE LOW-SPEED AIRFLOW(Droplet/particle combustion-1)
- Numerical Analysis of Combustion around a Strut in Supersonic Airflow
- Asymptotic Analysis on the Extinction of Diffusion Flames in Supersonic Stagnation-Point Flow
- Experiments on Flame Spread of a Fuel Droplet Array in a High-Pressure Ambience
- Flame Stabilization Mechanism of a Newly Devised Strut for the Scramjet Engine
- TED-AJ03-608 EXTINCTION OF THE COUNTERFLOW DIFFUSION FLAME OF BLENDED FUELS
- TED-AJ03-616 Extinction Limits of Counterflow Diffusion Flames of CO, H_2,CH_4 and Their Blends
- Structures and Stability of Lifted Combustion Zones in Preheated Oxidizer(Special Issue on International Conference on Power and Energy System)
- TED-AJ03-400 Radiation Reabsorption Effects on NO Emission from High-Temperature Air/CH_4 Counterflow Diffusion Flames
- Numerical Simulation of Ignition in Supersonic Reactive Shear Layers