Michiyoshi Itaru | Faculty Of Engineering Kyoto University
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概要
関連著者
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Michiyoshi Itaru
Faculty Of Engineering Kyoto University
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MATSUMOTO Ryuichi
Faculty of Engineering, Kyoto University
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Matsumoto Ryuichi
Faculty Of Econoinformatics Himeji Dokkyo Univer-sity
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Sato Takashi
Faculty of Pharmacy and Pharmaceutical Sciences, Fukuyama University
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MICHIYOSHI Itaru
Faculty of Engineering, Kyoto University
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Takeuchi Kiichiro
Engineering Research Institute Kyoto University
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SATO T.
Faculty of Engineering, Shinshu University
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Sato Takashi
Faculty Of Bioresource Sciences Akita Prefectural University
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Sato Takashi
Faculty Of Engineering Kyoto University
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Sato T.
Faculty of Engineering, Kyoto University
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KONDO Keigo
Mitsubishi Atomic Power Industry Co., Ltd.
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Kondo Keigo
Mitsubishi Atomic Power Industry Co. Ltd.
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HOZUMI Masahiro
Sumitomo Mechanical Industry Ltd.
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SUGAWARA Sugao
Faculty of Engineering, Kansai University
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TAKAHASHI Chusuke
Mitsui Chemical Industry
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Sugawara Sugao
Faculty Of Engineering Kansai University
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MATSUMOTO Ryuichi
Faculty of Engineering, Kobe University
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Sugawara S.
Faculty of Engineering, Kansai University
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Michiyoshi I.
Faculty of Engineering Kyoto University
著作論文
- Experimental Studies of Burnout under Boiling : 1 st Report, Transient Phenomena to Meltdown
- Experimental Studies of Burnout under Boiling : 2nd Report, On the Effects of Subcooling, Tube Diameter and Air Content
- Heat Transfer from an Inclined Thin Flat Plate by Natural Convection
- Heat Transfer of Slurry Flow with Internal Heat Generation : 3rd Report, Laminar Heat Transfer of Thermal Entrance Region in a Circular Tube for a Pseudo-Plastic Fluid
- On the Local Heat Release Rate in a Combustion Chamber of Gas Turbine
- Heat Transfer of Slurry Flow with Internal Heat Generation : 2nd Report, Laminar Heat Transfer of Thermal Entrance Region in a Circular Tube
- Heat Transfer of Slurry Flow with Internal Heat Generation : 4th Report, Laminar Heat Transfer in Thermal Entrance Region between Parallel Plates for Pseudo-Plastic and Dilatant Fluids
- The Thermo-Aerodynamical Analysis of Combustion Gas Flow : 2nd Report, One Dimensional Theory of Annular Combustion Chamber
- Heat Transfer of Slurry Flow with Internal Heat Generation : 1st Report, Fully-Developed Laminar Heat Transfer in a Circular Tube