Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator
Numerical and experimental investigation is carried out to study the laminar heat transfer and fluid flow characteristics in an equilateral triangular duct using combined vortex generator and nanofluids. Two different types of nanoparticles "namely Al2O3 and SiO2" suspended in distilled wa...
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my.utm.470452018-10-31T12:37:15Z http://eprints.utm.my/id/eprint/47045/ Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator Ahmed, H. E. Ahmed, M. I. Yusoff, M. Z. TH Building construction Numerical and experimental investigation is carried out to study the laminar heat transfer and fluid flow characteristics in an equilateral triangular duct using combined vortex generator and nanofluids. Two different types of nanoparticles "namely Al2O3 and SiO2" suspended in distilled water with two particles concentrations are successfully prepared and experimentally tested. Both numerical and experimental results show a good enhancement in heat transfer by using vortex generator with base fluid. A significant heat transfer enhancement is observed by using compound vortex generators and nanofluids accomplished with a moderate increase in the pressure drop. High gradient in wall temperatures is monitored when the water is replaced by nanofluid particularly at higher volume fraction. A small deviation has been seen between the present numerical and experimental results. Elsevier 2012 Article PeerReviewed Ahmed, H. E. and Ahmed, M. I. and Yusoff, M. Z. (2012) Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator. Superlattices and Microstructures, 52 (3). pp. 398-415. ISSN 0749-6036 https://www.sciencedirect.com/science/article/pii/S0749603612001577?via%3Dihub DOI:10.1016/j.spmi.2012.05.023 |
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TH Building construction Ahmed, H. E. Ahmed, M. I. Yusoff, M. Z. Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
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Numerical and experimental investigation is carried out to study the laminar heat transfer and fluid flow characteristics in an equilateral triangular duct using combined vortex generator and nanofluids. Two different types of nanoparticles "namely Al2O3 and SiO2" suspended in distilled water with two particles concentrations are successfully prepared and experimentally tested. Both numerical and experimental results show a good enhancement in heat transfer by using vortex generator with base fluid. A significant heat transfer enhancement is observed by using compound vortex generators and nanofluids accomplished with a moderate increase in the pressure drop. High gradient in wall temperatures is monitored when the water is replaced by nanofluid particularly at higher volume fraction. A small deviation has been seen between the present numerical and experimental results. |
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Article |
author |
Ahmed, H. E. Ahmed, M. I. Yusoff, M. Z. |
author_facet |
Ahmed, H. E. Ahmed, M. I. Yusoff, M. Z. |
author_sort |
Ahmed, H. E. |
title |
Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
title_short |
Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
title_full |
Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
title_fullStr |
Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
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Heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
title_sort |
heat transfer enhancement of laminar nanofluids flow in a triangular duct using vortex generator |
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Elsevier |
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2012 |
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http://eprints.utm.my/id/eprint/47045/ https://www.sciencedirect.com/science/article/pii/S0749603612001577?via%3Dihub |
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