Title of article
Experimental and numerical modelling of the three-dimensional incompressible flow behaviour in the near wake of circular cylinders
Author/Authors
Mahjoub Said، نويسنده , , Nejla and Mhiri، نويسنده , , Hatem and Bournot، نويسنده , , Hervé and Le Palec، نويسنده , , Georges، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
32
From page
471
To page
502
Abstract
An experimental investigation was carried out to study the structure of the flow field around three-dimensional circular cylinders. The study of the flow field around an obstacle was performed in a wind tunnel using a particle image velocimetry (PIV) system. The flow of a fluid around an obstacle with a different velocity to the oncoming flow was examined. The results showed the dependence of the flow structure around the obstacle on its Reynolds number, and the spacing between a pair of obstacles. Detailed quantitative information of turbulence parameters in the vicinity of the obstacle was attained. Extensive wind tunnel experimental results are presented and compared with numerical simulation. A three-dimensional numerical model with Reynolds stress model (RSM) turbulence and a non-uniform grid system were used to examine the effects of a single cylinder and two cylinders in tandem on the flow. The principal objective was to analyse three-dimensional flow past a single cylinder and two circular cylinders placed in tandem by combining the application of a PIV experimental technique and an RSM turbulence model.
e case of two cylinders in tandem, the flow patterns are characterized in the gap region as a function of the distance between the cylinders. A good level of agreement was found between the experimental results of flow and numerical simulation.
Keywords
PIV , Numerical simulation , Three-Dimensional , Cylinders , Turbulent flow , wakes , Shear stress , Vortices , Velocity , Recirculation zone
Journal title
Journal of Wind Engineering and Industrial Aerodynamics
Serial Year
2008
Journal title
Journal of Wind Engineering and Industrial Aerodynamics
Record number
1498313
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