Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity

This paper is concerned with numerical study of the two-sided lid-driven fluid flow in a staggered cavity. The ANSYS FLUENT commercial software was used for the simulation, In one of the simulated cases the lids are moving in opposite directions (antiparallel motion) and in the other they move in...

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Main Authors: Marković Jelena Đ., Lukić Nataša Lj., Ilić Jelena D., Nikolovski Branislava G., Sovilj Milan N., Šijački Ivana M.
Format: Article
Language:English
Published: Faculty of Technology, Novi Sad 2012-01-01
Series:Acta Periodica Technologica
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1450-7188/2012/1450-71881243169M.pdf
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author Marković Jelena Đ.
Lukić Nataša Lj.
Ilić Jelena D.
Nikolovski Branislava G.
Sovilj Milan N.
Šijački Ivana M.
author_facet Marković Jelena Đ.
Lukić Nataša Lj.
Ilić Jelena D.
Nikolovski Branislava G.
Sovilj Milan N.
Šijački Ivana M.
author_sort Marković Jelena Đ.
collection DOAJ
description This paper is concerned with numerical study of the two-sided lid-driven fluid flow in a staggered cavity. The ANSYS FLUENT commercial software was used for the simulation, In one of the simulated cases the lids are moving in opposite directions (antiparallel motion) and in the other they move in the same direction (parallel motion). Calculation results for various Re numbers are presented in the form of flow patterns and velocity profiles along the central lines of the cavity. The results are compared with the existing data from the literature. In general, a good agreement is found, especially in the antiparallel motion, while in the parallel motion the same flow pattern is found, but the velocity profiles are slightly different. [Projekat Ministarstva nauke Republike Srbije, br. 46010]
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spelling doaj.art-6d7da2983d1a4b8abb20fae5bbd980eb2022-12-22T00:39:56ZengFaculty of Technology, Novi SadActa Periodica Technologica1450-71882012-01-0120124316917810.2298/APT1243169MUsing the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavityMarković Jelena Đ.Lukić Nataša Lj.Ilić Jelena D.Nikolovski Branislava G.Sovilj Milan N.Šijački Ivana M.This paper is concerned with numerical study of the two-sided lid-driven fluid flow in a staggered cavity. The ANSYS FLUENT commercial software was used for the simulation, In one of the simulated cases the lids are moving in opposite directions (antiparallel motion) and in the other they move in the same direction (parallel motion). Calculation results for various Re numbers are presented in the form of flow patterns and velocity profiles along the central lines of the cavity. The results are compared with the existing data from the literature. In general, a good agreement is found, especially in the antiparallel motion, while in the parallel motion the same flow pattern is found, but the velocity profiles are slightly different. [Projekat Ministarstva nauke Republike Srbije, br. 46010]http://www.doiserbia.nb.rs/img/doi/1450-7188/2012/1450-71881243169M.pdfcavity benchmarkfluid flowtwo-sided lid driven cavityparallel motionantiparallel motion
spellingShingle Marković Jelena Đ.
Lukić Nataša Lj.
Ilić Jelena D.
Nikolovski Branislava G.
Sovilj Milan N.
Šijački Ivana M.
Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity
Acta Periodica Technologica
cavity benchmark
fluid flow
two-sided lid driven cavity
parallel motion
antiparallel motion
title Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity
title_full Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity
title_fullStr Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity
title_full_unstemmed Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity
title_short Using the Ansys Fluent for simulation of two-sided lid-driven flow in a staggered cavity
title_sort using the ansys fluent for simulation of two sided lid driven flow in a staggered cavity
topic cavity benchmark
fluid flow
two-sided lid driven cavity
parallel motion
antiparallel motion
url http://www.doiserbia.nb.rs/img/doi/1450-7188/2012/1450-71881243169M.pdf
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