Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube

The pressure drops and flow characteristics in a diffuser fitted with a semi-dimpled tube are numerically studied. Air is selected as a working fluid and its physical properties are modelled using pressure and velocity distribution. The study reveals that every semi-dimple act as a vortex generator....

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Published in:Journal of Mechanical Engineering
Main Author: Askari E.S.S.; Wisnoe W.
Format: Article
Language:English
Published: UiTM Press 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85131417831&doi=10.24191%2fJMECHE.V18I2.14995&partnerID=40&md5=47b40730a7a40883043ee706a815d6ad
id 2-s2.0-85131417831
spelling 2-s2.0-85131417831
Askari E.S.S.; Wisnoe W.
Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
2021
Journal of Mechanical Engineering
18
2
10.24191/JMECHE.V18I2.14995
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85131417831&doi=10.24191%2fJMECHE.V18I2.14995&partnerID=40&md5=47b40730a7a40883043ee706a815d6ad
The pressure drops and flow characteristics in a diffuser fitted with a semi-dimpled tube are numerically studied. Air is selected as a working fluid and its physical properties are modelled using pressure and velocity distribution. The study reveals that every semi-dimple act as a vortex generator. They provide the flow with intensive vortices between the dimpled surface and the diffuser wall. Therefore, they cause an enhancement in the pressure drop inside the diffuser. The performance of the dimples consisting of sphere type dimples with 5 mm in diameter. Three “Reynolds number” operated in the range of 25000 ˂Re˂ 50000 that is based on the hydraulic diameter of the diffuser Dh. The variation in Reynolds number is examined to further investigations of the pressure drop and flow characteristics of the diffuser. The numerical simulations are conducted using incompressible steady-state Reynolds Averaged Navier Stokes equations and the turbulence model “RNG k-e is utilized in the current study. The flow characteristics of the diffuser with semi-dimpled tube are analysed and compared in terms of pressure contour, velocity profile, and velocity vectors, at the operating range of Reynolds numbers. The results are discussed to point out the flow structure mechanisms. It is found that equipping the diffuser with a semi-dimpled tube leads to an increase in the recirculation and vortices inside and near the dimples area. Therefore, they have a considerable influence on the flow field. For the diffuser equipped with a semi-dimpled tube, it is noted that the flow characteristics depend on the Reynolds number. The pressure drop in the flow direction becomes lower with increasing Reynolds number. The findings indicate that for the semi-dimples, increasing Reynolds number increases the velocity distribution significantly due to better mixing of the air © 2021. College of Engineering, “Universiti Teknologi MARA (UiTM), Malaysia”
UiTM Press
18235514
English
Article
All Open Access; Bronze Open Access
author Askari E.S.S.; Wisnoe W.
spellingShingle Askari E.S.S.; Wisnoe W.
Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
author_facet Askari E.S.S.; Wisnoe W.
author_sort Askari E.S.S.; Wisnoe W.
title Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
title_short Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
title_full Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
title_fullStr Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
title_full_unstemmed Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
title_sort Pressure Drop and Flow Characteristics in a Diffuser with a Dimpled Tube
publishDate 2021
container_title Journal of Mechanical Engineering
container_volume 18
container_issue 2
doi_str_mv 10.24191/JMECHE.V18I2.14995
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85131417831&doi=10.24191%2fJMECHE.V18I2.14995&partnerID=40&md5=47b40730a7a40883043ee706a815d6ad
description The pressure drops and flow characteristics in a diffuser fitted with a semi-dimpled tube are numerically studied. Air is selected as a working fluid and its physical properties are modelled using pressure and velocity distribution. The study reveals that every semi-dimple act as a vortex generator. They provide the flow with intensive vortices between the dimpled surface and the diffuser wall. Therefore, they cause an enhancement in the pressure drop inside the diffuser. The performance of the dimples consisting of sphere type dimples with 5 mm in diameter. Three “Reynolds number” operated in the range of 25000 ˂Re˂ 50000 that is based on the hydraulic diameter of the diffuser Dh. The variation in Reynolds number is examined to further investigations of the pressure drop and flow characteristics of the diffuser. The numerical simulations are conducted using incompressible steady-state Reynolds Averaged Navier Stokes equations and the turbulence model “RNG k-e is utilized in the current study. The flow characteristics of the diffuser with semi-dimpled tube are analysed and compared in terms of pressure contour, velocity profile, and velocity vectors, at the operating range of Reynolds numbers. The results are discussed to point out the flow structure mechanisms. It is found that equipping the diffuser with a semi-dimpled tube leads to an increase in the recirculation and vortices inside and near the dimples area. Therefore, they have a considerable influence on the flow field. For the diffuser equipped with a semi-dimpled tube, it is noted that the flow characteristics depend on the Reynolds number. The pressure drop in the flow direction becomes lower with increasing Reynolds number. The findings indicate that for the semi-dimples, increasing Reynolds number increases the velocity distribution significantly due to better mixing of the air © 2021. College of Engineering, “Universiti Teknologi MARA (UiTM), Malaysia”
publisher UiTM Press
issn 18235514
language English
format Article
accesstype All Open Access; Bronze Open Access
record_format scopus
collection Scopus
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