Kimoto Hideo | Faculty Of Engineering Science Osaka University
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概要
関連著者
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Kimoto Hideo
Faculty Of Engineering Science Osaka University
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KIMOTO Hideo
Faculity of Engineering Science, Osaka University
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Hirose Tatsuzo
Fukui Institute Of Technlogy
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Ueki Hiroshi
Faculty Of Engineering Science Osaka University
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Kimoto Hideo
Osaka University
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MOMOSE Kazunari
Faculty of Engineering Science, Osaka University
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Tsuda Yoshiyuki
Matsushita Electric Industry
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KIMOTO Hideo
Faculty of Engineering Science, Osaka University
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本木 日出夫
大阪大学基礎工学部
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桃瀬 一成
大阪大学大学院基礎工学研究科
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SASOH Kiyoshi
Graduate School of Osaka University
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Momose Kazunari
Osaka University
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TSUDA Yoshiyuki
Matsushita Electric Industrial Co.
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木本 日出夫
大阪大学基礎工学部
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木本 日出夫
阪大基
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Onishi Toshio
Kawasaki Steel Work Industry
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HIROSE TATSUZO
Fukui Institute of Technology
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Kimoto H
Osaka Univ. Osaka
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Terao Kunio
Department Of Mechanical Engineering And Materials Science Faculty Of Engineering Yokohama National
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INOUE Kazuo
Matsushita Electric Industrial Co.
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MAKI Nobuo
Kansai Electric Co.
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KADOTSUJI Akira
Torey Engineering Co.
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TSUDA Yoshiyuki
Energy Conversion Research Laboratory, Matsushita Electric Industorial Co., Ltd.
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FUJII Takeshi
Sakai Factory, Osaka Gas Co.
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Kamoto Akira
Toyota Motor Co.
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HIROSE Tatuzo
Fukui Technical University
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YOSHINOBU Hiroo
Faculity of Engineering Science, Osaka University
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Yoshinobu Hiroo
Faculity Of Engineering Science Osaka University
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Umemoto Kengo
Takenaka Cooperation
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Fujii Takeshi
Sakai Factory Osaka Gas Co.
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Terao Kunio
Department Of Mechanical Engineering Yokohama National University
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Kimoto Hideo
Faculty of Engineering Science, Osaka University,
著作論文
- Thermal Boundary Condition Effects on Forced Convection Heat Transfer : Application of Numerical Solution of Adjoint Problem
- A Study on Impulsive Pressure of a Collapsing Cavitation Bubble : Evaluation of the Effect of a Water Microjet : Fluids Engineering
- A Study of Flow Characteristics of a Circular Cylinder in a Rectangular Conduit
- Effect of Vibration on the Natural Convection Heat Transfer of a Horizontal Cylinder
- An Experimental Study of the Model Microjet
- Experimental Study of the Shock Generation at the Collapse of Cavitation Bubble
- Experimental Study on Sluggish Bubble Behaviors in Pressure Waves
- A Study of a Cavitation Bubble on a Solid Boundary
- Behavior of a Spark-induced Bubble between Parallel Walls
- A Photoelastic Study of Impact Pressure by Model Microjet
- Fredholm-Type Boundary Integral Expression of Forced Convection Heat Transfer and Its Application to Convection-Conduction Conjugated Heat Transfer Problem
- Cavitation in a V-Slot : Measurement of Impulsive Pressure
- DISCUSSION : Experimental Investigations of Cavitation Bubble Collapse by a Water Shock Tube