Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder

Three-dimensional unsteady flow field around a finite circular cylinder standing in a flat-plate boundary layer is studied. For this purpose, two different numerical turbulence approaches as wall adapted local eddyviscosity LES (LES-WALE) and the zonal hybrid RANS-LES approach of Detached-Eddy Simu...

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Main Authors: Ramin Kamali-Moghadam, K. Javadi, Farzad Kiani
Format: Article
Language:English
Published: Isfahan University of Technology 2016-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=40028&issue_ID=225
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spelling doaj-33f09b197e374dee916833f9f54cbec82020-11-25T01:59:00ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722016-01-0192909923.Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular CylinderRamin Kamali-Moghadam0K. Javadi1Farzad Kiani2Astronautics Research Institute, Iranian Space Research CenterDepartment of Aerospace Engineering, Sharif University of Technology, Tehran, IranAerospace Research InstituteThree-dimensional unsteady flow field around a finite circular cylinder standing in a flat-plate boundary layer is studied. For this purpose, two different numerical turbulence approaches as wall adapted local eddyviscosity LES (LES-WALE) and the zonal hybrid RANS-LES approach of Detached-Eddy Simulation (Zonal-DES) are used. Analysis is carried out for a finite circular cylinder with diameter of D = 3 mm and length-to-diameter ratio of L/D=6 which leads to the Reynolds number 2×104. Numerical simulation has been performed based on the LES-WALE and Zonal-DES turbulence models using coarse and fine grids. Ability and accuracy of two models in capturing the complex physics of present phenomenon are investigated by comparing their results with each other and validated experimental results. Also, effect of several important parameters such as time-averaged pressure coefficient, velocity, vortex shedding frequency and performance of the LES-WALE and Zonal-DES turbulence models are studied.http://jafmonline.net/JournalArchive/download?file_ID=40028&issue_ID=225Finite circular cylinder; LES-WALE; Zonal-DES; Turbulence models; 3D unsteady flow.
collection DOAJ
language English
format Article
sources DOAJ
author Ramin Kamali-Moghadam
K. Javadi
Farzad Kiani
spellingShingle Ramin Kamali-Moghadam
K. Javadi
Farzad Kiani
Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder
Journal of Applied Fluid Mechanics
Finite circular cylinder; LES-WALE; Zonal-DES; Turbulence models; 3D unsteady flow.
author_facet Ramin Kamali-Moghadam
K. Javadi
Farzad Kiani
author_sort Ramin Kamali-Moghadam
title Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder
title_short Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder
title_full Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder
title_fullStr Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder
title_full_unstemmed Assessment of the LES-WALE and Zonal-DES Turbulence Models in Simulation of the Flow Structures around the Finite Circular Cylinder
title_sort assessment of the les-wale and zonal-des turbulence models in simulation of the flow structures around the finite circular cylinder
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2016-01-01
description Three-dimensional unsteady flow field around a finite circular cylinder standing in a flat-plate boundary layer is studied. For this purpose, two different numerical turbulence approaches as wall adapted local eddyviscosity LES (LES-WALE) and the zonal hybrid RANS-LES approach of Detached-Eddy Simulation (Zonal-DES) are used. Analysis is carried out for a finite circular cylinder with diameter of D = 3 mm and length-to-diameter ratio of L/D=6 which leads to the Reynolds number 2×104. Numerical simulation has been performed based on the LES-WALE and Zonal-DES turbulence models using coarse and fine grids. Ability and accuracy of two models in capturing the complex physics of present phenomenon are investigated by comparing their results with each other and validated experimental results. Also, effect of several important parameters such as time-averaged pressure coefficient, velocity, vortex shedding frequency and performance of the LES-WALE and Zonal-DES turbulence models are studied.
topic Finite circular cylinder; LES-WALE; Zonal-DES; Turbulence models; 3D unsteady flow.
url http://jafmonline.net/JournalArchive/download?file_ID=40028&issue_ID=225
work_keys_str_mv AT raminkamalimoghadam assessmentoftheleswaleandzonaldesturbulencemodelsinsimulationoftheflowstructuresaroundthefinitecircularcylinder
AT kjavadi assessmentoftheleswaleandzonaldesturbulencemodelsinsimulationoftheflowstructuresaroundthefinitecircularcylinder
AT farzadkiani assessmentoftheleswaleandzonaldesturbulencemodelsinsimulationoftheflowstructuresaroundthefinitecircularcylinder
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