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NUMERICAL STUDY OF THE BLOCKAGE EFFECTS ON VISCOUS FLOW PAST A CIRCULAR CYLINDER

✍ Scribed by P ANAGNOSTOPOULOS; G ILIADIS; S RICHARDSON


Publisher
John Wiley and Sons
Year
1996
Tongue
English
Weight
866 KB
Volume
22
Category
Article
ISSN
0271-2091

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✦ Synopsis


In various numerical solutions of flow around bluff bodies the unbounded physical domain is replaced by a restricted computational one whose extent depends on the size of the computational grid network. The truncation of the solution domain in the cross-flow direction reduces the computer time required for the solution, but introduces numerical blockage effects which influence considerably the values of the various flow parameters. In the present paper the finite element solution of steady and unsteady flow around a circular cylinder at Re = 106 is presented for blockage ratios of 0.05, 0.15 and 0.25. A boundary condition was tested for which the streamfunction values at the outer boundaries were those of the htational solution around a circular cylinder. The size of the standing vortices decreases with the blockage ratio when the flow is steady, while the spacing of the vortices decreases in both directions with increasing blockage ratio when the wake becomes unsteady. The hydrodynamic forces on the cylinder and the Shpuhal number am magnified as the blockage ratio increases. The application of the streamfunction values derived from the irrotational solution at the outer boundaries reduced blockage effects only at high blockage ratio.


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