Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels

Helical channels have a wide range of applications in petroleum engineering, nuclear, heat exchanger, chemical, mineral and polymer industries. They are used in the separation processes for fluids of different densities. The centrifugal force, free surface and geometrical effects of the helical chan...

Full description

Saved in:
Bibliographic Details
Main Authors: Elbatran, A. H., Yaakob, Omar, Ahmed, Yasser Mohamed, Shabara, H. M.
Format: Article
Published: Taylor's University 2015
Subjects:
Online Access:http://eprints.utm.my/id/eprint/58670/
https://jestec.taylors.edu.my/V10Issue7.htm
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.utm.58670
record_format eprints
spelling my.utm.586702021-12-15T07:00:21Z http://eprints.utm.my/id/eprint/58670/ Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels Elbatran, A. H. Yaakob, Omar Ahmed, Yasser Mohamed Shabara, H. M. TJ Mechanical engineering and machinery Helical channels have a wide range of applications in petroleum engineering, nuclear, heat exchanger, chemical, mineral and polymer industries. They are used in the separation processes for fluids of different densities. The centrifugal force, free surface and geometrical effects of the helical channel make the flow pattern more complicated; hence it is very difficult to perform physical experiment to predict channel performance. Computational Fluid Dynamics (CFD) can be suitable alternative for studying the flow pattern characteristics in helical channels. The different ranges of dimensional parameters, such as curvature and torsion, often cause various flow regimes in the helical channels. In this study, the effects of physical parameters such as curvature, torsion, Reynolds number, Froude number and Dean Number on the characteristics of the turbulent flow in helical rectangular channels have been investigated numerically, using a finite volume RANSE code Fluent of Ansys workbench 10.1 UTM licensed. The physical parameters were reported for range of curvature (d) of 0.16 to 0.51 and torsion (?) of 0.032 to 0.1 .The numerical results of this study showed that the decrease in the channel curvature and the increase in the channel torsion numbers led to the increase of the flow velocity inside the channel and the change in the shape of water free surface at given Dean, Reynolds and Froude numbers. Taylor's University 2015 Article PeerReviewed Elbatran, A. H. and Yaakob, Omar and Ahmed, Yasser Mohamed and Shabara, H. M. (2015) Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels. Journal of Engineering Science and Technology, 10 (7). pp. 827-840. ISSN 1823-4690 https://jestec.taylors.edu.my/V10Issue7.htm
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Elbatran, A. H.
Yaakob, Omar
Ahmed, Yasser Mohamed
Shabara, H. M.
Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
description Helical channels have a wide range of applications in petroleum engineering, nuclear, heat exchanger, chemical, mineral and polymer industries. They are used in the separation processes for fluids of different densities. The centrifugal force, free surface and geometrical effects of the helical channel make the flow pattern more complicated; hence it is very difficult to perform physical experiment to predict channel performance. Computational Fluid Dynamics (CFD) can be suitable alternative for studying the flow pattern characteristics in helical channels. The different ranges of dimensional parameters, such as curvature and torsion, often cause various flow regimes in the helical channels. In this study, the effects of physical parameters such as curvature, torsion, Reynolds number, Froude number and Dean Number on the characteristics of the turbulent flow in helical rectangular channels have been investigated numerically, using a finite volume RANSE code Fluent of Ansys workbench 10.1 UTM licensed. The physical parameters were reported for range of curvature (d) of 0.16 to 0.51 and torsion (?) of 0.032 to 0.1 .The numerical results of this study showed that the decrease in the channel curvature and the increase in the channel torsion numbers led to the increase of the flow velocity inside the channel and the change in the shape of water free surface at given Dean, Reynolds and Froude numbers.
format Article
author Elbatran, A. H.
Yaakob, Omar
Ahmed, Yasser Mohamed
Shabara, H. M.
author_facet Elbatran, A. H.
Yaakob, Omar
Ahmed, Yasser Mohamed
Shabara, H. M.
author_sort Elbatran, A. H.
title Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
title_short Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
title_full Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
title_fullStr Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
title_full_unstemmed Numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
title_sort numerical investigation of curvature and torsion effects on water flow field in helical rectangular channels
publisher Taylor's University
publishDate 2015
url http://eprints.utm.my/id/eprint/58670/
https://jestec.taylors.edu.my/V10Issue7.htm
_version_ 1720436884358823936
score 13.160551