Yoshizawa Akira | Institute For Industrial Science University Of Tokyo
スポンサーリンク
概要
関連著者
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Yoshizawa Akira
Institute For Industrial Science University Of Tokyo
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Yoshizawa Akira
Institute Of Industrial Science University Of Tokyo
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YOSHIZAWA Akira
Institute of Industrial Science, The University of Tokyo
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SAKIYAMA Masayuki
Department of Physics,Faculty of Science,University of Tokyo
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Sakiyama Masayuki
Department Of Physics Faculty Of Science University Of Tokyo
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YOSHIZAWA Akira
Institute of Industrial Science,University of Tokyo
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KATO Shoji
Department of Informatics, Nara Sangyo University
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Yokoi Nobumitsu
Institute Of Industrial Science The University Of Tokyo
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Kato Shoji
Department Of Astronomy Faculty Of Science Kyoto University
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Kato S
Kyoto Univ. Kyoto
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Kato S
Department Of Astronomy Kyoto University
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Kimura Yoshifumi
Department Of Chemistry Graduate School Of Science Kyoto University
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Itoh Sanae-i.
Research Instittue For Applied Mechanics Kyushu University
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Itoh Kimitaka
National Inst. For Fusion Sci. Gifu
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Yoshizawa A
Univ. Tokyo Tokyo Jpn
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Kimura Yoshihumi
Department of Chemistry, Graduate School of Science, Kyoto University
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Shimomura Yutaka
Institute Of Industrial Science University Of Tokyo
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Yokoi N
Institute Of Industrial Science University Of Tokyo
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Yokoi Nobumitsu
Institute Of Industrial Science University Of Tokyo
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Yoshizawa A
Kanagawa Univ. Kanagawa
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Akira Yoshizawa
Institute Of Industrial Science University Of Tokyo
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Yoshizawa Akira
Institute Of Science University Of Tokyo
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Yoshizawa Akira
Institute Of Industrial Science Uiversity Of Tokyo
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KIMURA Yoshifumi
Department of Physics,Faculty of Science,University of Tokyo
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Horiuti Kiyosi
Institute of Industrial Science,University of Tokyo
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HORIUTI Kiyosi
Institute of Industrial Science, University of Tokyo
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Nishijima Shoichi
Institute for Industrial Science,University of Tokyo
著作論文
- A Model of Hydromagnetic Turbulence in Accretion Disks. II
- A Steady Hydrodynamical Turbulence in Differentially Rotating Disks
- A Statistical Investigation upon the Eddy Viscosity in Incompressible Turbulence
- On Flow Reversal in Turbulent Swirling Flow
- Vortex Dynamo and Large-Scale Turbulent Structures in a Rotating System
- A Statistical Investigation of the Modeling of a Mean-Shear-Related Term in the Pressure-Strain Correlation of a Turbulent Shear Flow
- Statistical Analysis of Anisotropic Turbulent Viscosity in a Rotating System
- A Statistical Theory of Thermally-Driven Turbulent Shear Flows,with the Derivation of a Subgrid Model
- Statistical Theory for the Diffusion of a Passive Scalar in Turbulent Shear Flows
- A Governing Equation for the Small-Scale Turbulence
- Statistical Modeling of Turbulent Thermally Buoyant Flows
- A Statistical Construction of the Reynolds-Stress Closure Model in Inhomogeneous Turbulence
- Statistical Evaluation of the Triple Velocity Correlation and the Pressure-Velocity Correlation in Shear Turbulence
- Statistical Approach to Inhomogeneous Turbulence with Unidirectional Mean Flow.II.Mean Velocity Profile in a Channel Flow
- Statistical Approach to Inhomogeneous Turbulent Diffusion: General Formulation and Diffusion of a Passive Scalar in Wall Turbulence
- Perturbational Method in Magnetohydrodynamic Turbulence with Special Reference to Magnetic Dynamo
- An Eulerian Galilean-Invariant Approach to Diffusion of a Passive Scalar in Homogeneous Turbulence
- A Governing Equation for the Small-Scale Turbulence.II.Modified DIA Approach and Kolmogorov's-5/3 Power Low
- Statistical Approach to Inhomogeneous Trubulence with Unidirectional Mean Flow: Evaluation of Reynolds Stress
- Kolmogoroff's Spectrum and a Scaling Law in Stationary Homogeneous Turbulence
- Statistical Approach to Diffusion of a Passive Scalar in Homogeneous Turbulence
- Quest for a mass-weighted-averaging turbulence theory, with an unexpected finding about the countergradient diffusion and blockage of heat and matters
- A Statistically-Derived Subgrid-Scale Kinetic Energy Model for the Large-Eddy Simulation of Turbulent Flows
- Structure of the Dissipation Range in Homogeneous Turbulence
- A Statistical Investigation of Shear Turbulence: the Reynolds-Stress Transport Equation
- A Statistical Investigation of Transport Equation for Energy Dissipation in Shear Turbulence
- Statistical Theory for Boussinesq Turbulence
- Statistical Derivation of Kolmogorov's-5/3 Power Law by Turbulent-Viscosity Approach
- A Statistical Approach to Kolmogoroff's -5/3 Power Law
- An Eulerian Galilean-Invariant Theory for Homogeneous Turbulence, with Application to Inhomogeneous Turbulence with Arbitrary Mean Flows
- Statistical Modeling of Compressible Turbulence:Shock-Wave/Turbulence Interactions and Buoyancy Effects