Numerical simulation of confined swirling flows of viscoelasticfluids with suction and injection
Publish place: 12th Conference of Fluid Dynamics
Publish Year: 1388
Type: Conference paper
Language: English
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Document National Code:
CFD12_179
Index date: 8 June 2009
Numerical simulation of confined swirling flows of viscoelasticfluids with suction and injection abstract
The effect of a fluid's elasticity has been investigated on the vortex break down phenomenon in confined swirling flow. Assuming that the fluid obeys upper-convected Maxwell model as its constitutive equation, the finite volume method together with a collocated mesh Was used to calculate the velocity profiles and streamline pattern inside a typical lid-driven swirling flow at different Reynolds and Weissenberg numbers. The flow Was to be steady and axisymmetric. Based on the results obtained in this work, it can be concluded that fluid's elasticity has a strong effect on the vortex break down completely reversing its direction of rotation depending on the Weissenberg number. Also, the effect of suction and injection on the flow structure of both Newtonian and viscoelastic fluids Was surveyed. Based on our results, uniform suction and injection tend to diminish Newtonian and elastic vortices.
Numerical simulation of confined swirling flows of viscoelasticfluids with suction and injection Keywords:
Numerical simulation of confined swirling flows of viscoelasticfluids with suction and injection authors
K Sadeghy
Associate Professor Mechanical Engineering Department University of Tehran
S Majidi
M.Sc. Student Mechanical Engineering Department University of Tehran
M Esmaeili
M.Sc. Student Mechanical Engineering Department University of Tehran
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