TOMITA Yuji | Kyushu Institute of Technology
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概要
関連著者
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TOMITA Yuji
Kyushu Institute of Technology
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Jotaki Tomosada
Kyushu Institute Of Technology
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FUNATSU Katsuya
Kyushu Institute of Technology
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Horii Kiyoshi
Shirayuri Women's College
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Horii Kiyoshi
Shirayuri Woman's College
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Peng X
Jamstec Yokohama Jpn
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SHIMO Yukio
NTT Science and Core Technology Laboratory Group, Nippon Telegraph and Telephone Corporation
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Tomita Y
Kyushu Institute Of Technology
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Shimo Yukio
Ntt Science And Core Technology Laboratory Group Nippon Telegraph And Telephone Corporation
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Peng Xinjian
Kyushu Institute Of Technology
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Tomita Yoshihiro
Department Of Mechanical Engineering Faculty Of Engineering Kobe University
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Tomita Y
Hokkaido Univ. Education Hakodate Jpn
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Tomita Y
Department Of Mechanical Engineering Faculty Of Engineering Kobe University
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TASHIRO HIROYUKI
Kurume Institute of Technology
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HORII Kiyoshi
Shirayuri College
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Zhao Yao-hua
Kyushu University
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OHSUMI Hiroshi
Toa Corporation
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SATO Keiichi
Kanazawa Institute of Technology
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Tomita Yuji
Second Department Of Internal Medicine Faculty Of Medicine Kyushu University
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Tomita Y
Kyushu Inst. Technology Kitakyushu Jpn
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Miyazaki Kenji
Kyushu Institute Of Technology
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Yamamoto Masahide
Kyushu Institute Of Technology
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HIGASHI Kazuhiko
Kyushu Institute of Technology
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SHIRAKURA Noriyuki
Kyushu Institute of Technology
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FUNATSU Katsuya
Department of Mechanical Engineering, Kyusyu Institute of Technology
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SHIRAKURA Noriyuki
Department of Mechanical Engineering, Kyusyu Institute of Technology
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TSUZUKI Shingo
Kyushu Institute of Technology
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Funatsu K
Kyusyu Inst. Technology Kitakyusyu Jpn
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Tomita Yuji
Kyushu Institute Of Technology Tobata-ku Kitakyushu.
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Jotaki Tomosada
Kyushu Institute Of Technology.
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Jotaki Tomosada
Kyushu Kyoritsu Univeristy
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ABE Kimihiro
Engineer, Mitsubishi chemical Industry
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Abe Kimihiro
Engineer Mitsubishi Chemical Industry
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TOMITA Yuji
Kyushu Institute of Technology,
著作論文
- Effect of Spiral Airflow for Water Purging
- Parachute Method for Optical Cable Installation Using Spiral Airflow
- Pressure and Velocity Distributions along the Conveying Pipe in Vertical Pneumatic Riser at High Solids Ratio Transport of Powdery Material
- Motion of a single particle in a horizontal pipe
- Effect of Particle-Particle Collision and Particle Rotation upon Floating Mechanism of Coarse Particles in Horizontal Pneurnatic Pipe
- Neutral Stability of Laminar Boundary Layers along the Concave Wall
- Analysis of Capsule Pipeline System by the Method of Characteristics : Numerical Analysis and Comparison with Transport Experiment
- Diffusion of a Dusty Gas : Part 1,The Velocity Distribution of Turbulent Jet
- Feed Rate of a Rotary Feeder
- Turbulent Friction Drag of a Dusty Gas : Part 1,Theoretical Study
- Elongational Viscosity and Secondary Instability of Laminar Boundary Layer
- Pipe Flows of Dilute Aqueous Polymer Solution : Part 3, Viscous Sublayer and Adjacent Wall Region
- Analysis of Capsule Pipeline System by the Method of Characteristics : Influence of Air Leakage through the Capsule between the Pipe Wall and the Capsule
- Numerical Analysis of Pneumatic Capsule Pipeline System by the Method of Characteristics : Continuous Loading under a Constant Cycle