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Large-Eddy Simulation of High Reynolds Number Turbulent Flow Past a Square Cylinder
Authors:Y Srinivas  G Biswas  A S Parihar  R Ranjan
Affiliation:1Research Scholar, Interdisciplinary Centre for Scientific Computing, Univ. of Heidelberg, Heidelberg-69120, Germany.
2Professor, Dept. of Mechanical Engineering, Indian Institute of Technology, Kanpur-208016, India (corresponding author). E-mail: gtm@iitk.ac.in
3Project Associate, Dept. of Mechanical Engineering, Indian Institute of Technology, Kanpur-208016, India.
4Undergraduate Student, Dept. of Mechanical Engineering, Indian Institute of Technology, Kanpur-208016, India.
Abstract:Flow past a square cylinder at a Reynolds number of 21,400 has been studied numerically using the large-eddy simulation technique. A dynamic subgrid-scale stress model has been used for the small scales of turbulence. The time- and span-averaged axial and transverse velocities in the downstream of the cylinder are in good agreement with the experimental results. The distribution of turbulent normal and shear stresses is also well predicted. The coherent and incoherent components of turbulent fluctuations at some specified phases have been separated and their relative magnitudes downstream of the cylinder have been compared. The comparison shows more coherence in the near wake than the far wake, while the coherent and incoherent components are of comparable magnitude in the far wake. The far wake shows irregular phase-averaged structures.
Keywords:Turbulent flow  Vortex shedding  Shear stress  Simulation  Reynolds number  Cylinders  
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