Prediction of 10-mm Hydrocyclone Separation Efficiency Using Computational Fluid Dynamics

Author:

Grady S.A.,Wesson G.D.,Abdullah M,Kalu E.E.

Publisher

Mark Allen Group

Subject

Industrial and Manufacturing Engineering,Filtration and Separation,General Environmental Science

Reference12 articles.

1. Chen C J & S Y Jaw, 1998, Fundamentals of Turbulence Modeling, Taylor & Francis, Washington, DC, USA.

2. Dabir B & C A Petty, 1984, Laser doppler anemometry measurements of tangential and axial velocities in a hydrocyclone operating without an air core, 2nd International Conference on Hydrocyclones, Bath, UK, p.15–26.

3. Derksen J J & H E A Van den Akker, 2000, Simulation of vortex core precession in a reverse-flow hydrocyclone, AIChE J., 46 (7), p.1317–1331.

4. Dvorak R, 1989, Separation of light dispersions in long hydrocyclones, Chemical Engineering, Michigan State University, Lansing, MI, USA.

5. Fu S, P G Huang, Launder BE & Leschziner M A, 1988, A comparison of algebraic and differential second-moment closures for axisymmetric turbulent shear flows with and without swirl, J. Fluids Engineering, 110, p.216–221.

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