A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts

Working fluid with higher thermal conductivity and tube with better fluid mixing are two crucial elements for heat transfer enhancement in heat exchanger system. Hence, several methods and techniques have been explored to improve heat transfer efficiency, including dispersing nanoparticles into conv...

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Main Authors: Saadah Ahmad, Shahrir Abdullah, Kamaruzzaman Sopian
Format: Article
Language:English
Published: SAGE Publishing 2020-06-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814020924893
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spelling doaj-4dfc2e1de2c74331aee6b460cefca9b52020-11-25T03:40:36ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402020-06-011210.1177/1687814020924893A review on the thermal performance of nanofluid inside circular tube with twisted tape insertsSaadah AhmadShahrir AbdullahKamaruzzaman SopianWorking fluid with higher thermal conductivity and tube with better fluid mixing are two crucial elements for heat transfer enhancement in heat exchanger system. Hence, several methods and techniques have been explored to improve heat transfer efficiency, including dispersing nanoparticles into conventional heat transfer fluid and inserting instruments inside the tube of the heat exchanger. Studies have shown that nanofluid can improve heat transfer efficiency of the system due to its higher thermal conductivity and drastic Brownian motion of nanoparticles while inserts within tube can improve heat transfer efficiency by increasing axial velocity of working fluid for better fluid mixing. This article summarized 109 of journals from recent research on heat transfer enhancement of nanofluid flowing inside the tube with inserts as well as discussing the significant parameters that affected the system’s efficiency such as nanoparticles’ volume fraction, Reynolds number and types and configurations of inserts. Ultimately, analysis will be carried out to determine the most suitable modification of twisted tape inserts with the most optimum value of nanoparticle volume fraction for turbulence flow regime. Finally, some problems that need to be solved for future research such as agglomeration and pressure drop are discussed.https://doi.org/10.1177/1687814020924893
collection DOAJ
language English
format Article
sources DOAJ
author Saadah Ahmad
Shahrir Abdullah
Kamaruzzaman Sopian
spellingShingle Saadah Ahmad
Shahrir Abdullah
Kamaruzzaman Sopian
A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
Advances in Mechanical Engineering
author_facet Saadah Ahmad
Shahrir Abdullah
Kamaruzzaman Sopian
author_sort Saadah Ahmad
title A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
title_short A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
title_full A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
title_fullStr A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
title_full_unstemmed A review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
title_sort review on the thermal performance of nanofluid inside circular tube with twisted tape inserts
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2020-06-01
description Working fluid with higher thermal conductivity and tube with better fluid mixing are two crucial elements for heat transfer enhancement in heat exchanger system. Hence, several methods and techniques have been explored to improve heat transfer efficiency, including dispersing nanoparticles into conventional heat transfer fluid and inserting instruments inside the tube of the heat exchanger. Studies have shown that nanofluid can improve heat transfer efficiency of the system due to its higher thermal conductivity and drastic Brownian motion of nanoparticles while inserts within tube can improve heat transfer efficiency by increasing axial velocity of working fluid for better fluid mixing. This article summarized 109 of journals from recent research on heat transfer enhancement of nanofluid flowing inside the tube with inserts as well as discussing the significant parameters that affected the system’s efficiency such as nanoparticles’ volume fraction, Reynolds number and types and configurations of inserts. Ultimately, analysis will be carried out to determine the most suitable modification of twisted tape inserts with the most optimum value of nanoparticle volume fraction for turbulence flow regime. Finally, some problems that need to be solved for future research such as agglomeration and pressure drop are discussed.
url https://doi.org/10.1177/1687814020924893
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