Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips

In biological instruments, medicines and agriculture, the agglomeration of nanofluids and biotechnological mechanisms can offer significant advantages. The nanofibers, nanowires, droplets are more useful in the field of nanotechnology. There is a significant demand for nanotechnology and one can exp...

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Main Authors: Farooq Ahmad, H. Waqas, Hela Ayed, Sajjad Hussain, S. Farooq, S.A. Khan, A. Othman Almatroud
Format: Article
Language:English
Published: Elsevier 2021-08-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X21002951
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author Farooq Ahmad
H. Waqas
Hela Ayed
Sajjad Hussain
S. Farooq
S.A. Khan
A. Othman Almatroud
author_facet Farooq Ahmad
H. Waqas
Hela Ayed
Sajjad Hussain
S. Farooq
S.A. Khan
A. Othman Almatroud
author_sort Farooq Ahmad
collection DOAJ
description In biological instruments, medicines and agriculture, the agglomeration of nanofluids and biotechnological mechanisms can offer significant advantages. The nanofibers, nanowires, droplets are more useful in the field of nanotechnology. There is a significant demand for nanotechnology and one can expect that the future of these materials is very bright. Due to the different shapes and sizes of the nanomaterials, it is exemplified into various types. In one of them are carbon nanotubes (CNTs). These nanotubes are carbon allotropes. Carbon nanotubes are more practiced in the field of energy storage, optics, thermal stability, nanotubes transistors, and electromagnetic interference and in many areas. Keeping in such practical applications of nanotubes and nanofluid, we have scrutinized the magneto Casson nanofluid flow past a cylinder with carbon nanotubes (MWCNT and SWCNT). Here the sodium alginate is utilized as a regular fluid and nanoparticles MoS2 and Cu are dispersed in it. The impacts of multi slip behavior are considered in the presence of nonlinear thermal radiation. Multi degree governing flow equations are remodeled by similarity transformation and then tackled via shooting algorithm with Lobatto-IIIa formula. The physical flow behaviors of interesting parameters against velocity and temperature field are elaborated in Figures using Matlab software. Results indicate that flow of fluid is decline with fluid parameter. Further, volume fraction of nanoparticles reduces the temperature. The study is relevant to efficient thermal transportation in heat exchangers and electronic appliances.
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spelling doaj.art-d1118ab1499d49679d80b25ba763e5742022-12-21T18:42:37ZengElsevierCase Studies in Thermal Engineering2214-157X2021-08-0126101132Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slipsFarooq Ahmad0H. Waqas1Hela Ayed2Sajjad Hussain3S. Farooq4S.A. Khan5A. Othman Almatroud6Department of Mathematics, Colleg of Science, University of Ha'il, Ha'il, Saudi Arabia; School of Mechanical and Aero Space Engineering, Nanyang Technological University, Singapore; Corresponding author. Department of Mathematics, Colleg of Science, University of Ha'il, Ha'il, Saudi Arabia.Department of Mathematics, Government College University Faisalabad, Layyah Campus, Layyah, PakistanDepartment of Mathematics, Colleg of Science, University of Ha'il, Ha'il, Saudi ArabiaDepartment of Mathematics, Govt. Post Graduate Colleg, Layyah, B.Z Uni, Pakistan; School of Mechanical and Aero Space Engineering, Nanyang Technological University, SingaporeDepartment of Mathematics, Govt. College University, Lahore, PakistanDepartment of Mathematics, Government College University Faisalabad, Layyah Campus, Layyah, PakistanDepartment of Mathematics, Colleg of Science, University of Ha'il, Ha'il, Saudi ArabiaIn biological instruments, medicines and agriculture, the agglomeration of nanofluids and biotechnological mechanisms can offer significant advantages. The nanofibers, nanowires, droplets are more useful in the field of nanotechnology. There is a significant demand for nanotechnology and one can expect that the future of these materials is very bright. Due to the different shapes and sizes of the nanomaterials, it is exemplified into various types. In one of them are carbon nanotubes (CNTs). These nanotubes are carbon allotropes. Carbon nanotubes are more practiced in the field of energy storage, optics, thermal stability, nanotubes transistors, and electromagnetic interference and in many areas. Keeping in such practical applications of nanotubes and nanofluid, we have scrutinized the magneto Casson nanofluid flow past a cylinder with carbon nanotubes (MWCNT and SWCNT). Here the sodium alginate is utilized as a regular fluid and nanoparticles MoS2 and Cu are dispersed in it. The impacts of multi slip behavior are considered in the presence of nonlinear thermal radiation. Multi degree governing flow equations are remodeled by similarity transformation and then tackled via shooting algorithm with Lobatto-IIIa formula. The physical flow behaviors of interesting parameters against velocity and temperature field are elaborated in Figures using Matlab software. Results indicate that flow of fluid is decline with fluid parameter. Further, volume fraction of nanoparticles reduces the temperature. The study is relevant to efficient thermal transportation in heat exchangers and electronic appliances.http://www.sciencedirect.com/science/article/pii/S2214157X21002951CNTs (SWCNT & MWCNT)Sodium Alginate nanofluidCupperNonlinear thermal radiationMultiple slip effectMatlab
spellingShingle Farooq Ahmad
H. Waqas
Hela Ayed
Sajjad Hussain
S. Farooq
S.A. Khan
A. Othman Almatroud
Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips
Case Studies in Thermal Engineering
CNTs (SWCNT & MWCNT)
Sodium Alginate nanofluid
Cupper
Nonlinear thermal radiation
Multiple slip effect
Matlab
title Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips
title_full Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips
title_fullStr Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips
title_full_unstemmed Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips
title_short Numerical treatment with Lobatto-IIIa scheme magneto-thermo-natural convection flow of casson nanofluid (MoS2−Cu/SA) configured by a stretching cylinder in porous medium with multiple slips
title_sort numerical treatment with lobatto iiia scheme magneto thermo natural convection flow of casson nanofluid mos2 cu sa configured by a stretching cylinder in porous medium with multiple slips
topic CNTs (SWCNT & MWCNT)
Sodium Alginate nanofluid
Cupper
Nonlinear thermal radiation
Multiple slip effect
Matlab
url http://www.sciencedirect.com/science/article/pii/S2214157X21002951
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