Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid

Thermal performance of Al 2 O 3 nanoparticles dispersed in water was evaluated experimentally in a fully instrumented circular tube under turbulent flow conditions. Thermophysical properties of Al 2 O 3 nanofluids at three different volumetric concentrations (0.38%, 0.81%, and 1.30%) were determined...

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Main Authors: Minsuk Kong, Seungro Lee
Format: Article
Language:English
Published: SAGE Publishing 2020-08-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814020952277
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spelling doaj-eac064daad0740fc93963a97c37d914b2020-11-25T03:49:56ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402020-08-011210.1177/1687814020952277Performance evaluation of AlO nanofluid as an enhanced heat transfer fluidMinsuk Kong0Seungro Lee1Department of Building Equipment System & Fire Protection Engineering, Gachon University, Seongnam-si, Gyeonggi-do, Republic of KoreaDepartment of Mechanical Engineering, Jeonbuk National University, Jeonju, Jeollabuk-do, Republic of KoreaThermal performance of Al 2 O 3 nanoparticles dispersed in water was evaluated experimentally in a fully instrumented circular tube under turbulent flow conditions. Thermophysical properties of Al 2 O 3 nanofluids at three different volumetric concentrations (0.38%, 0.81%, and 1.30%) were determined as a function of temperature. Pressure drop and heat transfer experiments were carried out at different volumetric concentrations and inlet fluid temperatures (10°C–30°C). The overall performance of the Al 2 O 3 nanofluids was evaluated by considering both their hydraulic and heat transfer characteristics. The experimental results showed that the use of Al 2 O 3 nanofluids increases the pressure drop by up to about 13% due to the greater viscosity. In addition, the heat transfer coefficient of nanofluids increased with the volumetric concentration by up to approximately 19% induced by the enhanced thermal conductivity. Furthermore, the experimental results indicated that the nanofluid with a volume fraction of 0.81% at the highest inlet fluid temperature increases the overall performance by up to around 8% and performs better than the other volume fractions. Enhancement in the overall performance increases with increasing inlet fluid temperature because of both the enhanced effective thermal conductivity and the decreased viscosity, which increases the energy exchange and decreases the pressure loss, respectively.https://doi.org/10.1177/1687814020952277
collection DOAJ
language English
format Article
sources DOAJ
author Minsuk Kong
Seungro Lee
spellingShingle Minsuk Kong
Seungro Lee
Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid
Advances in Mechanical Engineering
author_facet Minsuk Kong
Seungro Lee
author_sort Minsuk Kong
title Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid
title_short Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid
title_full Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid
title_fullStr Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid
title_full_unstemmed Performance evaluation of AlO nanofluid as an enhanced heat transfer fluid
title_sort performance evaluation of alo nanofluid as an enhanced heat transfer fluid
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2020-08-01
description Thermal performance of Al 2 O 3 nanoparticles dispersed in water was evaluated experimentally in a fully instrumented circular tube under turbulent flow conditions. Thermophysical properties of Al 2 O 3 nanofluids at three different volumetric concentrations (0.38%, 0.81%, and 1.30%) were determined as a function of temperature. Pressure drop and heat transfer experiments were carried out at different volumetric concentrations and inlet fluid temperatures (10°C–30°C). The overall performance of the Al 2 O 3 nanofluids was evaluated by considering both their hydraulic and heat transfer characteristics. The experimental results showed that the use of Al 2 O 3 nanofluids increases the pressure drop by up to about 13% due to the greater viscosity. In addition, the heat transfer coefficient of nanofluids increased with the volumetric concentration by up to approximately 19% induced by the enhanced thermal conductivity. Furthermore, the experimental results indicated that the nanofluid with a volume fraction of 0.81% at the highest inlet fluid temperature increases the overall performance by up to around 8% and performs better than the other volume fractions. Enhancement in the overall performance increases with increasing inlet fluid temperature because of both the enhanced effective thermal conductivity and the decreased viscosity, which increases the energy exchange and decreases the pressure loss, respectively.
url https://doi.org/10.1177/1687814020952277
work_keys_str_mv AT minsukkong performanceevaluationofalonanofluidasanenhancedheattransferfluid
AT seungrolee performanceevaluationofalonanofluidasanenhancedheattransferfluid
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