Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis

The influences of partial slip, Soret and Dufour on unsteady boundary layer flow, heat and mass transfer over shrinking sheet in Copper-water nanofluid are investigated numerically using Tiwari and Das’s model. The governing equations are transformed to ordinary differential equations using similari...

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Published in:Journal of Nanofluids
Main Author: 2-s2.0-85067975687
Format: Article
Language:English
Published: American Scientific Publishers 2019
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85067975687&doi=10.1166%2fjon.2019.1707&partnerID=40&md5=bfb7fcf526c52792fe23e2e4380908e3
id Dzulkifli N.F.; Bachok N.; Pop I.; Yacob N.A.; Arifin N.M.; Rosali H.
spelling Dzulkifli N.F.; Bachok N.; Pop I.; Yacob N.A.; Arifin N.M.; Rosali H.
2-s2.0-85067975687
Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
2019
Journal of Nanofluids
8
7
10.1166/jon.2019.1707
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85067975687&doi=10.1166%2fjon.2019.1707&partnerID=40&md5=bfb7fcf526c52792fe23e2e4380908e3
The influences of partial slip, Soret and Dufour on unsteady boundary layer flow, heat and mass transfer over shrinking sheet in Copper-water nanofluid are investigated numerically using Tiwari and Das’s model. The governing equations are transformed to ordinary differential equations using similarity transformation. The system of equations is solved by boundary value problem with fourth order accuracy (bvp4c) program in Matlan and the numerical results are presented graphically to show the behaviour of the flow. The findings show that the dual solutions exist for certain range of suction effect (s > 0.58) with the presence of partial slip effect. Besides, Soret effect increases the heat transfer and declines the mass transfer at the surface while Dufour effect showed the opposite trend. Since the dual solutions are obtained, the stability analysis is performed and it is found that the first solution is a stable and physically-realizable solution. © 2019 by American Scientific Publishers.
American Scientific Publishers
2169432X
English
Article
All Open Access; Green Open Access
author 2-s2.0-85067975687
spellingShingle 2-s2.0-85067975687
Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
author_facet 2-s2.0-85067975687
author_sort 2-s2.0-85067975687
title Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
title_short Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
title_full Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
title_fullStr Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
title_full_unstemmed Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
title_sort Soret and dufour effects on unsteady boundary layer flow and heat transfer in copper-water nanofluid over a shrinking sheet with partial slip and stability analysis
publishDate 2019
container_title Journal of Nanofluids
container_volume 8
container_issue 7
doi_str_mv 10.1166/jon.2019.1707
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85067975687&doi=10.1166%2fjon.2019.1707&partnerID=40&md5=bfb7fcf526c52792fe23e2e4380908e3
description The influences of partial slip, Soret and Dufour on unsteady boundary layer flow, heat and mass transfer over shrinking sheet in Copper-water nanofluid are investigated numerically using Tiwari and Das’s model. The governing equations are transformed to ordinary differential equations using similarity transformation. The system of equations is solved by boundary value problem with fourth order accuracy (bvp4c) program in Matlan and the numerical results are presented graphically to show the behaviour of the flow. The findings show that the dual solutions exist for certain range of suction effect (s > 0.58) with the presence of partial slip effect. Besides, Soret effect increases the heat transfer and declines the mass transfer at the surface while Dufour effect showed the opposite trend. Since the dual solutions are obtained, the stability analysis is performed and it is found that the first solution is a stable and physically-realizable solution. © 2019 by American Scientific Publishers.
publisher American Scientific Publishers
issn 2169432X
language English
format Article
accesstype All Open Access; Green Open Access
record_format scopus
collection Scopus
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