Laminar Flow in a Helically Coiled Pipe
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概要
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The governing equations for a steady fully developed laminar flow in a helically coiled pipe are derived and the solutions are obtained for small values of a^*/R^*, where a^* is the radius of the pipe cross-section and R^* is the radius of the circular cylinder on which the pipe center-line is helically coiled. The torsion of the pipe center-line causes asymmetry of the flow pattern in a pipe cross-section, an example which appears in the inclination of the flow pattern at large values of the parameter D_1. Here, D_1 = (C^*a^<*3>/ v^<*2>ρ^*)(2a^*cos^2β/R^*)^<1/2>, where C^* is a costant pressure drop along the pipe center-line, v^* is the kinematic viscosity, ρ^* is the density of the fluid and β is a constant angle which the normal to the helix makes with the generating line of the cylinder. It is concluded that the resistance formula for a toroidally curved pipe is also applicable to a coiled pipe, if the curvature of the coiled pipe is used instead of that of the toroidally curved one.
- 一般社団法人日本機械学会の論文
著者
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Inaba Takehiko
Osaka University
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Miyake Yutaka
Osaka University
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Ohnishi Hiroshi
Yanmer Diesel Co. Ltd.
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MURATA Susumu
Department of Mechanical Engineering, Osaka University
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OGAWA Hiroshi
Yanmer Diesel Co. Ltd.
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Murata Susumu
Department Of Mechanical Engineering Osaka University
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