Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium

A double pipe heat exchanger is significant device for many industrial applications. In this paper, an experimental study using both porous media and nanofluid to enhance heat transfer in a double pipe heat exchanger is performed. The test rig has been fabricated with inner copper pipe of 1.10 m len...

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Main Authors: Jasim Qusay Kamel, Saleh Noah Mohammed, Hussein Adnan Mohammed
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2020-01-01
Series:Thermal Science
Subjects:
ntu
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98362000056J.pdf
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spelling doaj-cea543ed613c421aa220a04bccde924b2021-02-05T08:41:46ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632020-01-01246 Part B4267427510.2298/TSCI190602056J0354-98362000056JImproving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous mediumJasim Qusay Kamel0Saleh Noah Mohammed1Hussein Adnan Mohammed2Northern Technical University, Mosul, IraqNorthern Technical University, Mosul, IraqNorthern Technical University, Mosul, IraqA double pipe heat exchanger is significant device for many industrial applications. In this paper, an experimental study using both porous media and nanofluid to enhance heat transfer in a double pipe heat exchanger is performed. The test rig has been fabricated with inner copper pipe of 1.10 m length, 16 mm, and 14 mm outside and inside diameter, respectively. While, the outer PVC pipe is 1 m length, 31 mm, and 27 mm outside and inside diameter, respectively. The inner pipe has been filling with 3 mm diameters of steel balls porous media. The experimental tests were performed utilizing alumina nanofluid (Al2O3-water) with two volume concentrations 0.5% and 1%. The volume flow-rates are in the range of (2-5) Lpm and 10 Lpm through inner and outer pipe, respectively. It was conducted with a constant 28ᵒC inlet temperature of cold fluid-flow inside the inner pipe and 50ᵒC inlet temperature of hot fluid-flow inside the outer pipe. Results indicated that the heat transfer enhanced as nanofluid volume concentrations and volume flow-rates increase. It was observed that effectiveness increases as increase of flow-rate and nanofluid concentrations.http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98362000056J.pdfheat exchangereffectivenessntunanofluidporous media
collection DOAJ
language English
format Article
sources DOAJ
author Jasim Qusay Kamel
Saleh Noah Mohammed
Hussein Adnan Mohammed
spellingShingle Jasim Qusay Kamel
Saleh Noah Mohammed
Hussein Adnan Mohammed
Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium
Thermal Science
heat exchanger
effectiveness
ntu
nanofluid
porous media
author_facet Jasim Qusay Kamel
Saleh Noah Mohammed
Hussein Adnan Mohammed
author_sort Jasim Qusay Kamel
title Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium
title_short Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium
title_full Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium
title_fullStr Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium
title_full_unstemmed Improving thermal performance using Al2O3-water nanofluid in a double pipe heat exchanger filling with porous medium
title_sort improving thermal performance using al2o3-water nanofluid in a double pipe heat exchanger filling with porous medium
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2020-01-01
description A double pipe heat exchanger is significant device for many industrial applications. In this paper, an experimental study using both porous media and nanofluid to enhance heat transfer in a double pipe heat exchanger is performed. The test rig has been fabricated with inner copper pipe of 1.10 m length, 16 mm, and 14 mm outside and inside diameter, respectively. While, the outer PVC pipe is 1 m length, 31 mm, and 27 mm outside and inside diameter, respectively. The inner pipe has been filling with 3 mm diameters of steel balls porous media. The experimental tests were performed utilizing alumina nanofluid (Al2O3-water) with two volume concentrations 0.5% and 1%. The volume flow-rates are in the range of (2-5) Lpm and 10 Lpm through inner and outer pipe, respectively. It was conducted with a constant 28ᵒC inlet temperature of cold fluid-flow inside the inner pipe and 50ᵒC inlet temperature of hot fluid-flow inside the outer pipe. Results indicated that the heat transfer enhanced as nanofluid volume concentrations and volume flow-rates increase. It was observed that effectiveness increases as increase of flow-rate and nanofluid concentrations.
topic heat exchanger
effectiveness
ntu
nanofluid
porous media
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2020/0354-98362000056J.pdf
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AT salehnoahmohammed improvingthermalperformanceusingal2o3waternanofluidinadoublepipeheatexchangerfillingwithporousmedium
AT husseinadnanmohammed improvingthermalperformanceusingal2o3waternanofluidinadoublepipeheatexchangerfillingwithporousmedium
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