Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet
The efficiency of fuel consumptions and improved performances is real challenge in the vehicle engines. Recent advances in thermal engineering suggested various tools to improve the capacitance of engine oil for which the interaction of nanoparticles is more dynamical. The aim of current research is...
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Format: | Article |
Language: | English |
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Elsevier
2023-11-01
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Series: | Case Studies in Thermal Engineering |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2214157X23008997 |
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author | Shami A.M. Alsallami Tasawar Abbas A. Al-Zubaidi Sami Ullah Khan S. Saleem |
author_facet | Shami A.M. Alsallami Tasawar Abbas A. Al-Zubaidi Sami Ullah Khan S. Saleem |
author_sort | Shami A.M. Alsallami |
collection | DOAJ |
description | The efficiency of fuel consumptions and improved performances is real challenge in the vehicle engines. Recent advances in thermal engineering suggested various tools to improve the capacitance of engine oil for which the interaction of nanoparticles is more dynamical. The aim of current research is to enhance the thermal aspects of engine oil with suspension of Williamson hybrid nanofluid. The hybrid nanofluid is the suspension of molybdenum disulfide MoS2 and zinc oxide ZnO. In order to increase the heating capability of system, external heat source and viscous dissipation features are contributed. The flow analysis is based on moving surface contains porous medium. After modelling the problem, the analytical outcomes of attributed with variational iteration method (VIM). The computational simulations are performed with help of Lagrange Multiplier technique. The impact of numerous physical parameters on skin fraction, Nusselt numbers, temperature distribution and velocity profile is exhibited. |
first_indexed | 2024-03-11T16:30:45Z |
format | Article |
id | doaj.art-02a7b34166144373a08b180b259ea53d |
institution | Directory Open Access Journal |
issn | 2214-157X |
language | English |
last_indexed | 2024-03-11T16:30:45Z |
publishDate | 2023-11-01 |
publisher | Elsevier |
record_format | Article |
series | Case Studies in Thermal Engineering |
spelling | doaj.art-02a7b34166144373a08b180b259ea53d2023-10-24T04:06:47ZengElsevierCase Studies in Thermal Engineering2214-157X2023-11-0151103593Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheetShami A.M. Alsallami0Tasawar Abbas1A. Al-Zubaidi2Sami Ullah Khan3S. Saleem4Department of Mathematical Sciences, College of Applied Science, Umm Al-Qura University, Makkah, 21955, Saudi ArabiaDepartment of Mathematics, University of Wah, Wah Cantt, 47070, Pakistan; Corresponding author.Department of Mathematics, College of Science, King Khalid University, Abha, 61413, Saudi ArabiaDepartment of Mathematics, Namal University, Mianwali, 42250, PakistanDepartment of Mathematics, College of Science, King Khalid University, Abha, 61413, Saudi ArabiaThe efficiency of fuel consumptions and improved performances is real challenge in the vehicle engines. Recent advances in thermal engineering suggested various tools to improve the capacitance of engine oil for which the interaction of nanoparticles is more dynamical. The aim of current research is to enhance the thermal aspects of engine oil with suspension of Williamson hybrid nanofluid. The hybrid nanofluid is the suspension of molybdenum disulfide MoS2 and zinc oxide ZnO. In order to increase the heating capability of system, external heat source and viscous dissipation features are contributed. The flow analysis is based on moving surface contains porous medium. After modelling the problem, the analytical outcomes of attributed with variational iteration method (VIM). The computational simulations are performed with help of Lagrange Multiplier technique. The impact of numerous physical parameters on skin fraction, Nusselt numbers, temperature distribution and velocity profile is exhibited.http://www.sciencedirect.com/science/article/pii/S2214157X23008997Variational Iteration MethodLagrange multiplierWilliamson hybrid nanofluidThermal properties |
spellingShingle | Shami A.M. Alsallami Tasawar Abbas A. Al-Zubaidi Sami Ullah Khan S. Saleem Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet Case Studies in Thermal Engineering Variational Iteration Method Lagrange multiplier Williamson hybrid nanofluid Thermal properties |
title | Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet |
title_full | Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet |
title_fullStr | Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet |
title_full_unstemmed | Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet |
title_short | Analytical assessment of heat transfer due to Williamson hybrid nanofluid (MoS2 + ZnO) with engine oil base material due to stretched sheet |
title_sort | analytical assessment of heat transfer due to williamson hybrid nanofluid mos2 zno with engine oil base material due to stretched sheet |
topic | Variational Iteration Method Lagrange multiplier Williamson hybrid nanofluid Thermal properties |
url | http://www.sciencedirect.com/science/article/pii/S2214157X23008997 |
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