Hibara Hideki | Department Of Mechanical Engineering Ehime University
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概要
関連著者
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Hibara Hideki
Department Of Mechanical Engineering Ehime University
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OCHI Junji
Department of Mechanical Engineering, Ehime University
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IWAMOTO Yukiharu
Department of Mechanical Engineering, Ehime University
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Iwamoto Yukiharu
Department Of Mechanical Engineering Ehime University
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Ochi Junji
Department Of Mechanical Engineering Ehime University
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Tanaka Masa-aki
Thermal-hydraulic Research Group O-arai Engineering Center Japan Nuclear Cycle Development Institute
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MURAKAMI Satoshi
Thermal-hydraulic Research Group, O-arai Engineering Center, Japan Nuclear Cycle Development Institu
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HIBARA Hideki
Department of Mechanical Engineering, Ehime University
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SUDO Kozo
Faculty of Engineering, Shibaura Institute of Technology
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Sudo Kozo
Faculty Of Engineering Shibaura Institute Of Technology
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Nomura Shinfuku
Department Of Mechanical Engineering Ehime University
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MURAMATSU Toshiharu
O-arai Engineering Center, Japan Nuclear Cycle Development Institute
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NAKAJIMA Naohiro
Graduate School of Engineering, Ehime University
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TANAKA Masaaki
O-arai Engineering Center, Japan Nuclear Cycle Development Institute
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IKE Yohei
The Graduate School of Science and Engineering, Ehime University
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Ike Yohei
The Graduate School Of Science And Engineering Ehime University
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Nakajima Naohiro
Graduate School Of Engineering Ehime University
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Tanaka Masaaki
O-arai Engineering Center Japan Nuclear Cycle Development Institute
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Murakami Satoshi
Thermal-hydraulic Research Group O-arai Engineering Center Japan Nuclear Cycle Development Institute
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Muramatsu Toshiharu
O-arai Engineering Center Japan Nuclear Cycle Development Institute
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Nomura Shinfuku
Department of Engineering for Production and Environment, Graduate School of Science and Engineering, Ehime University, Matsuyama 790-8577, Japan
著作論文
- NUMERICAL SIMULATION OF THE FLOW CHARACTERISTICS IN T-JUNCTION WITH TURBULENCE PROMOTER(T-junction and Cross Flow)
- EFFECTS OF TURBULENCE PROMOTER ON FLOW IN T-JUNCTION PIPING SYSTEMS(T-junction and Cross Flow)
- 212 EFFECTS OF ULTRASONIC VIBRATIONS ON A TURBULENT SQUARE-DUCT FLOW(O.S.5 Advanced Technology for Usage of Sound and Vibration I)