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Featured researches published by Jun Ito.


Transactions of the Japan Society of Mechanical Engineers. B | 1990

A singularity method for three-dimensional thin wing in shear flow.

Jun Ito; Noriyoshi Sato; Masaru Takahashi

The guide vanes and the impellers of turbomachinery, because they operate between the casing and the boss, are in shear flow due to the wall boundary layer. The reason why so many problems involving this kind of branch are left unsolved seems to be the lack of applicability of the existing methods caused by mathematical or numerical difficulties. This paper aims to propose a concise and precise method of solution for the three-dimensional wing in shear flow between two parallel plane walls, which is a mode function method for the derived simultaneous integral equation.


Transactions of the Japan Society of Mechanical Engineers. B | 2011

Experimental Study on Rotational Temperatures in Nitrogen Molecular Beam

Hiroki Yamaguchi; Tatsuya Moriyama; Kyohei Ide; Jun Ito; Yu Matsuda; Tomohide Niimi


Transactions of the Japan Society of Mechanical Engineers. B | 2006

Characteristic Analysis of Supercavitating Three Dimensional Hydrofoil between Parallel Walls

Jun Ito; Yutaka Ishii


Transactions of the Japan Society of Mechanical Engineers. B | 1993

Lifting-Line Theory of a Supercavitating Hydrofoil in Both Vertical and Spanwise Shear Flow.

Jun Ito; Akira Narita; Riichiro Nakamura


Transactions of the Japan Society of Mechanical Engineers. B | 1992

A Theory of a Partially Cavitating Hydrofoil in Exponential Shear Flow.

Jun Ito


Transactions of the Japan Society of Mechanical Engineers. B | 1991

Lifting-Line Theory for a Supercavitating Hydrofoil in Shear Flow.

Jun Ito; Akira Narita


Transactions of the Japan Society of Mechanical Engineers. B | 2006

Theory of a Three Dimensional Supercavitating Cascade in Shear Flow

Jun Ito; Tetsuya Ito; Akihiro Miura


Transactions of the Japan Society of Mechanical Engineers. B | 2006

A Lifting-Line Analysis of a Cavitating Hydrofoil in Uniform Shear Flow

Jun Ito; Sakura Tsuchida


International journal of the Society of Materials Engineering for Resources | 1997

A Method for Hydrodynamic Characteristics of a Wing in a Shear Flow

Jun Ito; Riichiro Nakamura; Tetsuya Ito


Transactions of the Japan Society of Mechanical Engineers. B | 1992

A Theory of Supercavitating Hydrofoil in Exponential Shear Flow.

Jun Ito; Riichiro Nakamura; Eiichi Saito

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