Slow Viscous Flow Due to the Rotation of Two Finite Hinged Plates
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概要
- 論文の詳細を見る
Two-dimensional slow viscous flow due to the rotation of two finite hinged platesin an unbounded medium is investigated on the basis of the Stokes approximationunder the condition that the fluid velocity remains finite everywhere. The symmetricflow caused when the plates rotate oppositely about the vertex and antisymmetric flowdue to rotation of the plates as a whole are considered separately. A formal expres-sion for the flow is obtained by solving a pair of simulatneouts Wiener-Hopf equa-lions. The velocity induced at infinity is given as a function of the angle between theplates and the asymptotic behaviors of the flow near the vertex are discussed. Normaland shear forces and moment exerted on each plate are also calculated.
- 社団法人日本物理学会の論文
- 1986-01-15
著者
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Jeong Jae-Tack
Department of Mechanical Engineering, Kum-Oh National University of Technology
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Jeong Jae-tack
Department Of Mechanical Engineering Korea Advanced Institute Of Science And Technology
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Jeong Jae-tack
Department Of Mechanical Engineering
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Kim Moon-uhn
Department Of Mechanical Engineering Korea Advanced Institute Of Science And Technology
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Kim Moon-uhn
Department Of Applied Mathematics
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LEE Tae-Hee
Department of Mechanical Engineering,Korea Advanced Institute of Science and Technology
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Lee Tae-hee
Department Of Formulae Pharmacology College Of Oriental Medicine Kyung Won University
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Lee Tae-hee
Department Of Mechanical Engineering Korea Advanced Institute Of Science And Technology
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Lee Tae-Hee
Department of Electronics and Computer Engineering, Hanyang University, Seoul 133-791, Korea
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