KAJISHIMA Takeo | Department of Mechanical Engineering, Osaka University
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概要
関連著者
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KAJISHIMA Takeo
Department of Mechanical Engineering, Osaka University
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Kajishima Takeo
Department Of Mechanical Engineering Osaka University
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Miyake Yutaka
Department Of Mechanical Engineering Osaka University
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梶島 岳夫
大阪大学大学院工学研究科機械工学専攻
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MIYAKE Yutaka
Department of Mechanical Engineering, Osaka University
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Ohta Takashi
Department Of Anesthesiology Toda Chuo Sougou Hospital
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太田 貴士
福井大学大学院工学研究科機械工学専攻
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OHTA Takashi
Department of Neurological Surgery, Nihon University School of Medicine
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OKABAYASHI Kie
Department of Mechanical Engineering, Osaka University
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Takiguchi Satoshi
Graduate School Of Osaka University:(current Address)mitsubishi Heavy Industries Ltd.
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三宅 裕
福井工業大学工学部
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Okita Kohei
Graduate School Of Osaka University
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Okazaki Kazuhiko
Department Of Mechanical Engineering Osaka University
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RÍO Daniel
Department of Mechanical Engineering, Osaka University
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TAKIGUCHI Satoshi
Graduate School of Osaka University
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HAMASAKI Hiroyuki
Graduate School of Osaka University
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TAKIGUCHI Satoshi
Department of Mechanical Engineering, Osaka University
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Hamasaki Hiroyuki
Graduate School Of Osaka University:(current Address)denso Co.
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Ohta Takashi
Department Of Internal Medicine School Of Medicine Tokai University
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Sakai Hiroki
Department Of Food Science Niigata University Of Pharmacy And Applied Life Sciences
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梶島 岳夫
大阪大学
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OHTA Takashi
Department of Mechanical Engineering, University of Fukui
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SAKAI Hiroki
Department of Mechanical Engineering, Osaka University
著作論文
- Numerical Simulation of Hot Gas Dispersion from a Chimney
- Modeling of the Subgrid-Scale Pressure Distribution in Turbulent Mixing Layer
- High-Order Finite-Difference Method for Incompressible Flows Using Collocated Grid System
- G213 NUMERICAL INVESTIGATION OF UNSTEADY CAVITATING FLOW AROUND A RECTANGULAR PRISM(Fluid machinary-1)
- Direct Numerical Simulation of Turbulent Flow in a Wavy Channel
- Turbulence Structure of Particle-Laden Flow in a Vertical Plane Channel Due to Vortex Shedding
- Numerical Scheme to Resolve the Interaction between Solid Particles and Fluid Turbulence
- Estimation of Turbulence Models by Large Eddy Simulation with High-Resolution Grids
- Investigation of Interaction between Vortices and Cavitation in a Turbulent Shear Layer