The Canadian Journal of Chemical Engineering · 1994 · 52 citations · 7 references
Unsteady FlowComputational ProcedureEngineeringTurbulence ClosureAerospace EngineeringTurbulent Flow Heat TransferFluid MechanicsFlow PhysicTurbulence ModelingTurbulenceComputational Fluid DynamicsHydromechanicsMultiphase FlowTurbulent Flow
Abstract A computational procedure is employed in the present work to predict the flow field in a hydrocyclone. Computations are carried out for turbulent flow under assumptions of axial symmetry. Turbulence closure has been affected with the help of the conventional k → ϵ model that includes a new formulation of the turbulence dissipation equation. The existing formulation of the dissipation equation proved to be inadequate in predicting the true nature of the present flow field. Results of the procedure are discussed. The new model appears to predict correctly the behaviour of a conventional water‐fed hydrocyclone in the absence of an air core.
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Performance and design of hydrocyclones—I
K. Rietema · Chemical Engineering Science · 1961 · 175 citations
Near-wall modeling of the dissipation rate equation
R. M. C. So, H. S. Zhang, Charles G. Speziale · AIAA Journal · 1991 · 93 citations