Transport Phenomena in Rotating Systems
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概要
- 論文の詳細を見る
Rotation induces centrifugal and Coriolis forces. The former is unimportant in many problems but the latter is the cause of differences between the dynamics of rotating and non-rotating fluids. This article compares the nature of the Ekman layer which plays the key role in rotating fluids and that of the Prandtl boundary layer in non-rotating flow systems. Fluids in rotation are abundant in nature and have important applications in industry. This is an area that needs to be explored. Perspectives of research, both experimental and theoretical, on transport phenomena in rotating systems are presented to encourage researchers to meet the challenge.
- 一般社団法人日本機械学会の論文
- 1997-06-25
著者
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Mochizuki S
Department Of Mechanical Systems Engineering Tokyo University Of Agriculture And Technology
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Mochizuki Sadanari
Dept. Of Mechanical Systems Engineering Tokyo University Of A&t
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Mochizuki Sadanari
Department Of Mechanical Engineering Tokyo University Of Agriculture And Technology
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YANG WenJei
the Department of mechanical Engineering and Applied Mechanics, University of Michigan Department of
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Mochizuki S
Dept. Of Mechanical Systems Engineering Tokyo University Of A&t
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Yang Wenjei
The Department Of Mechanical Engineering And Applied Mechanics University Of Michigan Department Of
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Yang Wen
the Department of mechanical Engineering and Applied Mechanics, University of Michigan Department of Mechanical Systems Engineering, Tokyo University of Ariculture and Technology.
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