Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap

The present study is to investigate experimentally the enhancement of forced convection heat transfer by means of passive techniques for a turbulent air flow through an Aluminum test tube. Reynolds number range is from 6000 to 13500 with boundary conditions of constant heat flux. The augmentation pr...

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Main Authors: Akeel Abdullah Mohammed, Bashar Ali Mohammed, Raheem Jewi Muhee
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2014-10-01
Series:Engineering and Technology Journal
Online Access:https://etj.uotechnology.edu.iq/article_100007_33240a7726a8b897eb70c927435ad44f.pdf
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author Akeel Abdullah Mohammed
Bashar Ali Mohammed
Raheem Jewi Muhee
author_facet Akeel Abdullah Mohammed
Bashar Ali Mohammed
Raheem Jewi Muhee
author_sort Akeel Abdullah Mohammed
collection DOAJ
description The present study is to investigate experimentally the enhancement of forced convection heat transfer by means of passive techniques for a turbulent air flow through an Aluminum test tube. Reynolds number range is from 6000 to 13500 with boundary conditions of constant heat flux. The augmentation process is done by using divergent Nozzle-Turbulator arrangement with and without perforation models (triangle holes, square holes, and circle holes). The experimental results at the same Reynolds number show that the divergent nozzle-turbulators without perforation provides the highest heat transfer rate 317% and highest friction factor 17 times over that of plain tube with a performance factor of (1.58). On the other hand the perforated Nozzle-Turbulators with triangle holes gave a thermal performance factor of (1.7) which is the highest thermal performance factor among all other perforated and non perforated nozzle turbulators used in the present study
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spelling doaj.art-64efe949571e4430a829e6b6733e19292024-02-04T17:31:32ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582014-10-0132102514252710.30684/etj.32.10A.14100007Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shapAkeel Abdullah MohammedBashar Ali MohammedRaheem Jewi MuheeThe present study is to investigate experimentally the enhancement of forced convection heat transfer by means of passive techniques for a turbulent air flow through an Aluminum test tube. Reynolds number range is from 6000 to 13500 with boundary conditions of constant heat flux. The augmentation process is done by using divergent Nozzle-Turbulator arrangement with and without perforation models (triangle holes, square holes, and circle holes). The experimental results at the same Reynolds number show that the divergent nozzle-turbulators without perforation provides the highest heat transfer rate 317% and highest friction factor 17 times over that of plain tube with a performance factor of (1.58). On the other hand the perforated Nozzle-Turbulators with triangle holes gave a thermal performance factor of (1.7) which is the highest thermal performance factor among all other perforated and non perforated nozzle turbulators used in the present studyhttps://etj.uotechnology.edu.iq/article_100007_33240a7726a8b897eb70c927435ad44f.pdf
spellingShingle Akeel Abdullah Mohammed
Bashar Ali Mohammed
Raheem Jewi Muhee
Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap
Engineering and Technology Journal
title Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap
title_full Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap
title_fullStr Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap
title_full_unstemmed Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap
title_short Heat Transfer Enhancement in a Tube Fitted with Nozzle-Turbulators, Perforated Nozzle-Turbulators with Different hole shap
title_sort heat transfer enhancement in a tube fitted with nozzle turbulators perforated nozzle turbulators with different hole shap
url https://etj.uotechnology.edu.iq/article_100007_33240a7726a8b897eb70c927435ad44f.pdf
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