The average residence time of liquid flowing over the surface of a rotating cone was determined numerically. The development and propagation of the free surface flow was simulated using the volume of fluid (VOF) method. The numerical simulations were validated using laboratory experiments using soy‐oil as a model liquid, and approximate analytical solutions of the simplified governing equations. The numerical simulations revealed the importance of the cone rotation frequencies and the minor influence of the cone angles on the residence times. Higher liquid throughputs produced smaller residence times. As expected, an increasing cone size results in proportionally higher residence times. Furthermore, it was established that even for small cones with a characteristic diameter of, e.g. less than 1m, relatively high (∼1 kg/s) throughputs of liquid are possible. It appears that the combination of the decreasing layer thickness and the increasing size of the numerical grid cells with increasing radial cone coordinate hampers the numerical simulation of this system.
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1 August 2001
Research Article|
August 01 2001
Hydrodynamics of liquid flow in a rotating cone
P.E. Dijk;
P.E. Dijk
Georgia Institute of Technology, School of Civil and Environmental Engineering, Altanta, Georgia, USA
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A.M.C. Janse;
A.M.C. Janse
DSM Food Specialities, DFS/R&D/R&F, Delft, The Netherlands
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J.A.M. Kuipers;
J.A.M. Kuipers
Department of Chemical Engineering, Twente University, The Netherlands
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W.P.M. van Swaaij
W.P.M. van Swaaij
Department of Chemical Engineering, Twente University, The Netherlands
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Publisher: Emerald Publishing
Online ISSN: 1758-6585
Print ISSN: 0961-5539
© MCB UP Limited
2001
International Journal of Numerical Methods for Heat & Fluid Flow (2001) 11 (5): 386–412.
Citation
Dijk P, Janse A, Kuipers J, van Swaaij W (2001), "Hydrodynamics of liquid flow in a rotating cone". International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 11 No. 5 pp. 386–412, doi: https://doi.org/10.1108/09615530110397334
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