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Modeling of the Viscous Flow with a Free Surface inside a Rotating Horizontal Cylinder
Authors:G R Shrager  M N Shtokolova  V A Yakutenok  Yu M Milekhin  V M Merkulov  Yu B Banzula  S V Karyazov  I A Glushkov
Affiliation:(1) Tomsk State University, pr. Lenina 36, Tomsk, 634050, Russia;(2) Soyuz Federal Center for Dual-Use Technologies, Federal State Unitary Enterprise, ul. akademika Zhukova 42, Dzerzhinskii, Moscow oblast, 140090, Russia
Abstract:The flow of a high-viscosity liquid that partially fills a horizontal cylinder rotating at constant velocity is considered. A problem is mathematically formulated in the creeping-flow approximation and is numerically solved by the boundary-element method. Parametric studies of the kinematic and dynamic characteristics of the process as functions of control parameters are performed. Two flow patterns are revealed, and critical parameter values separating these patterns are found. Curves for the specific flow power as a function of the control parameters are obtained; these curves characterize the liquid dispersion intensity in the flow studied.__________Translated from Teoreticheskie Osnovy Khimicheskoi Tekhnologii, Vol. 39, No. 3, 2005, pp. 303–309.Original Russian Text Copyright © 2005 by Shrager, Shtokolova, Yakutenok, Milekhin, Merkulov, Banzula, Karyazov, Glushkov.
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