Kaneko Kenji | Faculty Of Engineering Science University Of Tokyo
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概要
関連著者
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Kaneko Kenji
Faculty Of Engineering Science University Of Tokyo
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KANEKO Kenji
Faculty of Science and Engineering, Saga University
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Setoguchi Toshiaki
Faculty Of Science And Engineering Sage University
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Setoguchi T
Saga Univ. Saga Jpn
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Setoguchi Toshiaki
Saga Univ
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Setoguchi Toshiaki
Faculty Of Sciences And Engineering Saga University
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INOUE Masahiro
Faculty of Engineering, Kyushu University
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Kaneko Kenji
Department Of Machanical Engineering Saga University
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Inoue Masahiro
Faculty Of Engineering Kyushu University
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Inoue Masahiro
徳島大学総合科学部
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Inoue M
徳島大学総合科学部
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Raghunathan Srinivasan
Aeronautical Engineering The Queen's University Of Belfast
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Nakano Toshihiro
Saga Univ
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RAGHUNATHAN Srinivasan
Faculty of Engineering, The Queen's University of Belfast
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Kaneko Kenji
Saga Univ
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Ikui Takefumi
Faculty Of Engineering Kyushu University
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SARUWATARI Tetsurou
Torishima Seisakusho
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SHIMAMOTO Katsumi
Saga University
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HAYASHI Shigemi
Torishima Seisakusho
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NAKANO Toshihiro
Faculty of Science and Engineering, Saga University
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Kaneko K
Science Univ. Tokyo Jpn
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Krempl Erhard
Department Of Mechanical Engineering Rensselaer Polytechnic Institute
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RAGHUNATHAN S
Department of Aeronautical Engineering, The Queen's University of Belfast
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INOUE Msahiro
Faculty of Science and Engineering, Sage University
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Raghunathan S
Department Of Aeronautical Engineering The Queen's University Of Belfast
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Inoue Msahiro
Faculty Of Science And Engineering Sage University
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Kikuchi Masanori
Faculty Of Science & Technology Science University Of Tokyo
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Kikuchi Masanori
Faculty Of Science And Engineering Science University Of Tokyo
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Kaneko Kenji
Faculty Of Science And Technology Saga University
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Kaneko Kenji
Faculty Of Engineering The Science University Of Tokyo
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Kaneko Kenji
Faculty Of Science And Engineering Sage University
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FURUYA YoShihito
Engineer, Kawasaki Steel Corp.
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Furuya Yoshihito
Engineer Kawasaki Steel Corp.
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Kikuchi Masanori
Faculty of Dairy Science, Rakunou University
著作論文
- Some Techniques to Improve the Operation Range of the Wells Turbine for Wave Power Generator
- Studies on Wells Turbine for a Wave Power Generator : 6th Report, Characteristics of Biplane Rotor : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- Studies on the Wells Turbine for Wave Power Generator (Turbine Characteristics and Design Parameter for Irregular Wave)
- Studies on Wells Turbine for Wave Power Generator : 4th Report, Starting and Running Characteristics in Periodically Oscillating Flow
- Studies on a Diagonal-Flow Airfoil Fan with Low Loading : 1st Report, Effects of Aspect Ratio and Solidity
- Studies on Wells Turbine for Wave Power Generator : Part 3; Effect of Guide Vanes
- Effect of Blade Surface Roughness on Performances of Axial Flow Fans with Different Blade Cambers
- RESEARCHES ON THE TWO-DIMENSIONAL CASCADE : Part 5,On the Performance of Flat-Plate Cascade
- Experimental Study on Viscoplastic Behavior of SUS 304 Stainless Steel After Axial Cyclic Preloading
- Studies on a Wells Turbine for a Wave Power generator : 5th Report, On Some Factors Concerning the Stall Condition : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- High-Temperature Strength of TiC-Coated SUS316 S.S.
- Development of a New Practical Plastic Constitutive Model for Anisotropic Metals after Various Preloadings : 1st Report, Outline of the Model