Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe

In recent years, there has been an increasing interest in heat transfer enhancement using nanofluids in channels due to current devices become smaller and more compact and are expected to perform better. Thus, we attempt to introduce hybrid nanofluids flow in a straight pipe using Ansys Fluent softw...

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Main Authors: Azman A., Yusoff M.Z., Mukhtar A., Gunnasegaran P., Hamid N.A., Ching N.K.
Other Authors: 24075556300
Format: Article
Published: Penerbit Akademia Baru 2023
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spelling my.uniten.dspace-265652023-05-29T17:12:03Z Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe Azman A. Yusoff M.Z. Mukhtar A. Gunnasegaran P. Hamid N.A. Ching N.K. 24075556300 7003976733 57195426549 35778031300 6604077116 55310814500 In recent years, there has been an increasing interest in heat transfer enhancement using nanofluids in channels due to current devices become smaller and more compact and are expected to perform better. Thus, we attempt to introduce hybrid nanofluids flow in a straight pipe using Ansys Fluent software. The simulation was prepared with certain specific parameters such as the hydraulic diameter is set at 10mm, the flow is a continuum, the Reynold number in the range of 5000 to 30000, k-? turbulent model used in this simulation, the inlet temperature 297 K, and the uniform temperature along the pipe at 313 K. This study was carried out on Al2O3+Cu / water hybrid nanofluids to analyse the thermal improvement and friction factor of nanofluids occur in a straight pipe. Then, the numerical results obtained were compared between mono and hybrid nanofluids. It was found that the mono nanofluids at 1% and 4% indicate a significant increase in Nusselt number at 17% and 24% respectively and hybrid nanofluid increase at 2% to 5.6% compared to base fluid. Whereas the friction factor remains similar for all the nanofluids. However, the performance evaluation criterion (PEC) has shown that hybrid nanofluids remain lower than mono nanofluids. � 2021, Penerbit Akademia Baru. All rights reserved. Final 2023-05-29T09:12:03Z 2023-05-29T09:12:03Z 2021 Article 10.37934/cfdl.13.2.4961 2-s2.0-85102922538 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85102922538&doi=10.37934%2fcfdl.13.2.4961&partnerID=40&md5=a029c78be28a0785b7a056fb174692b1 https://irepository.uniten.edu.my/handle/123456789/26565 13 2 49 61 All Open Access, Hybrid Gold Penerbit Akademia Baru Scopus
institution Universiti Tenaga Nasional
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description In recent years, there has been an increasing interest in heat transfer enhancement using nanofluids in channels due to current devices become smaller and more compact and are expected to perform better. Thus, we attempt to introduce hybrid nanofluids flow in a straight pipe using Ansys Fluent software. The simulation was prepared with certain specific parameters such as the hydraulic diameter is set at 10mm, the flow is a continuum, the Reynold number in the range of 5000 to 30000, k-? turbulent model used in this simulation, the inlet temperature 297 K, and the uniform temperature along the pipe at 313 K. This study was carried out on Al2O3+Cu / water hybrid nanofluids to analyse the thermal improvement and friction factor of nanofluids occur in a straight pipe. Then, the numerical results obtained were compared between mono and hybrid nanofluids. It was found that the mono nanofluids at 1% and 4% indicate a significant increase in Nusselt number at 17% and 24% respectively and hybrid nanofluid increase at 2% to 5.6% compared to base fluid. Whereas the friction factor remains similar for all the nanofluids. However, the performance evaluation criterion (PEC) has shown that hybrid nanofluids remain lower than mono nanofluids. � 2021, Penerbit Akademia Baru. All rights reserved.
author2 24075556300
author_facet 24075556300
Azman A.
Yusoff M.Z.
Mukhtar A.
Gunnasegaran P.
Hamid N.A.
Ching N.K.
format Article
author Azman A.
Yusoff M.Z.
Mukhtar A.
Gunnasegaran P.
Hamid N.A.
Ching N.K.
spellingShingle Azman A.
Yusoff M.Z.
Mukhtar A.
Gunnasegaran P.
Hamid N.A.
Ching N.K.
Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
author_sort Azman A.
title Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
title_short Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
title_full Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
title_fullStr Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
title_full_unstemmed Numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
title_sort numerical study of heat transfer enhancement for mono and hybrid nanofluids flow in a straight pipe
publisher Penerbit Akademia Baru
publishDate 2023
_version_ 1806424350626152448
score 13.214268