混相流
Online ISSN : 1881-5790
Print ISSN : 0914-2843
ISSN-L : 0914-2843
【論文特集】混相流研究の進展
回転円筒に駆動される気液二相流の流動様式
木南 直之渡村 友昭杉山 和靖
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2020 年 34 巻 1 号 p. 213-221

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Two-phase flow pattern of gas-liquid motion driven by a rotating cylinder is numerically studied. Two-dimensional direct numerical simulations are performed using a fixed mesh approach based on Volume Of Fluid (VOF) and Boundary Data Immersion (BDI) methods. With varying rotation speed Ω, material properties, and radius ratio, the distribution of the computed VOF function is classified into four patterns with respect to the liquid film thickness and liquid fraction on the rotating cylinder wall. The relevance of the flow pattern to the torque is discussed. The liquid film thickness at low Ω is found to be scaled using a ratio of viscous force to gravitational force.

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