Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow

Tube bundles are found in various heat transfer equipment for thermal energy transfer between fluids. However, the inter-spatial arrangement of the tubes of any tube bundle is a determining factor for its thermal and hydraulic performance. In this paper, the effect of varying the transverse and long...

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Main Authors: Petinrin M. O., Towoju O. A., Ajiboye S. A., Zebulun O. E.
Format: Article
Language:English
Published: Sumy State University 2019-04-01
Series:Журнал інженерних наук
Subjects:
Online Access:http://jes.sumdu.edu.ua/wp-content/uploads/2019/04/JES_2019_02_E1-E10.pdf
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spelling doaj-b13e250e84cc4d87be73a025598532722020-11-25T04:10:53ZengSumy State UniversityЖурнал інженерних наук2312-24982414-93812019-04-0162E1E1010.21272/jes.2019.6(2).e1Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross FlowPetinrin M. O.0Towoju O. A.1Ajiboye S. A.2Zebulun O. E.3University of Ibadan, Oduduwa Rd., Ibadan, NigeriaUniversity of Ibadan, Oduduwa Rd., Ibadan, NigeriaAdeleke University, P.M.B. 250, Ede-Osogbo Rd., Ede, Osun State, NigeriaUniversity of Ibadan, Oduduwa Rd., Ibadan, NigeriaTube bundles are found in various heat transfer equipment for thermal energy transfer between fluids. However, the inter-spatial arrangement of the tubes of any tube bundle is a determining factor for its thermal and hydraulic performance. In this paper, the effect of varying the transverse and longitudinal pitches downstream staggered circular tube bundle on the heat transfer and flow characteristic was numerically analyzed. Seven variations of tube arrangements were studied by changing the tube pitches within a Reynolds number range of 7 381 to 22 214. The analyses were carried out using the k-ε equation model imposed with the realizability constraint and were solved with finite volume CFD code, COMSOL Multiphysics. The results obtained were found to be in good agreement with existing correlations. The tube bundles with decreasing pitches demonstrated better heat transfer performance while those with increasing pitches exhibited a lower friction factor. Thus, the best thermal-hydraulic performance was obtained from increasing pitch arrangements.http://jes.sumdu.edu.ua/wp-content/uploads/2019/04/JES_2019_02_E1-E10.pdfcross flowvarying pitchtube bundleheat transferthermal-hydraulic performance
collection DOAJ
language English
format Article
sources DOAJ
author Petinrin M. O.
Towoju O. A.
Ajiboye S. A.
Zebulun O. E.
spellingShingle Petinrin M. O.
Towoju O. A.
Ajiboye S. A.
Zebulun O. E.
Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow
Журнал інженерних наук
cross flow
varying pitch
tube bundle
heat transfer
thermal-hydraulic performance
author_facet Petinrin M. O.
Towoju O. A.
Ajiboye S. A.
Zebulun O. E.
author_sort Petinrin M. O.
title Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow
title_short Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow
title_full Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow
title_fullStr Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow
title_full_unstemmed Numerical Study of the Effect of Changing Tube Pitches on Heat and Flow Characteristics from Tube Bundles in Cross Flow
title_sort numerical study of the effect of changing tube pitches on heat and flow characteristics from tube bundles in cross flow
publisher Sumy State University
series Журнал інженерних наук
issn 2312-2498
2414-9381
publishDate 2019-04-01
description Tube bundles are found in various heat transfer equipment for thermal energy transfer between fluids. However, the inter-spatial arrangement of the tubes of any tube bundle is a determining factor for its thermal and hydraulic performance. In this paper, the effect of varying the transverse and longitudinal pitches downstream staggered circular tube bundle on the heat transfer and flow characteristic was numerically analyzed. Seven variations of tube arrangements were studied by changing the tube pitches within a Reynolds number range of 7 381 to 22 214. The analyses were carried out using the k-ε equation model imposed with the realizability constraint and were solved with finite volume CFD code, COMSOL Multiphysics. The results obtained were found to be in good agreement with existing correlations. The tube bundles with decreasing pitches demonstrated better heat transfer performance while those with increasing pitches exhibited a lower friction factor. Thus, the best thermal-hydraulic performance was obtained from increasing pitch arrangements.
topic cross flow
varying pitch
tube bundle
heat transfer
thermal-hydraulic performance
url http://jes.sumdu.edu.ua/wp-content/uploads/2019/04/JES_2019_02_E1-E10.pdf
work_keys_str_mv AT petinrinmo numericalstudyoftheeffectofchangingtubepitchesonheatandflowcharacteristicsfromtubebundlesincrossflow
AT towojuoa numericalstudyoftheeffectofchangingtubepitchesonheatandflowcharacteristicsfromtubebundlesincrossflow
AT ajiboyesa numericalstudyoftheeffectofchangingtubepitchesonheatandflowcharacteristicsfromtubebundlesincrossflow
AT zebulunoe numericalstudyoftheeffectofchangingtubepitchesonheatandflowcharacteristicsfromtubebundlesincrossflow
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