Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.

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Exploration related to chemical processes in nanomaterial flows contains astonishing features. Nanoparticles have unique physical and chemical properties, so they are continuously used in almost every field of nanotechnology and nanoscience. The motive behind this article is to investigate the Cross...

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Detalles Bibliográficos
Autores: Mohd Nasir, Nor Ain Azeany, Sajid, Tanveer, Jamshed, Wasim, Cieza Altamirano, Gilder, Eid, Mohamed R., Abdel Aziz ElSeabee, Fayza
Formato: artículo
Fecha de Publicación:2023
Institución:Universidad Nacional Autónoma de Chota
Repositorio:UNACH-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.unach.edu.pe:20.500.14142/849
Enlace del recurso:https://repositorio.unach.edu.pe/handle/20.500.14142/849
https://doi.org/10.3390/sym15061145
Nivel de acceso:acceso abierto
Materia:industry
https://purl.org/pe-repo/ocde/ford#5.02.03
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dc.title.none.fl_str_mv Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
title Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
spellingShingle Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
Mohd Nasir, Nor Ain Azeany
industry
https://purl.org/pe-repo/ocde/ford#5.02.03
title_short Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
title_full Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
title_fullStr Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
title_full_unstemmed Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
title_sort Cubic Chemical Autocatalysis and Oblique Magneto Dipole Effectiveness on Cross Nanofluid Flow via a Symmetric Stretchable Wedge.
author Mohd Nasir, Nor Ain Azeany
author_facet Mohd Nasir, Nor Ain Azeany
Sajid, Tanveer
Jamshed, Wasim
Cieza Altamirano, Gilder
Eid, Mohamed R.
Abdel Aziz ElSeabee, Fayza
author_role author
author2 Sajid, Tanveer
Jamshed, Wasim
Cieza Altamirano, Gilder
Eid, Mohamed R.
Abdel Aziz ElSeabee, Fayza
author2_role author
author
author
author
author
dc.contributor.author.fl_str_mv Mohd Nasir, Nor Ain Azeany
Sajid, Tanveer
Jamshed, Wasim
Cieza Altamirano, Gilder
Eid, Mohamed R.
Abdel Aziz ElSeabee, Fayza
dc.subject.none.fl_str_mv industry
topic industry
https://purl.org/pe-repo/ocde/ford#5.02.03
dc.subject.ocde.none.fl_str_mv https://purl.org/pe-repo/ocde/ford#5.02.03
description Exploration related to chemical processes in nanomaterial flows contains astonishing features. Nanoparticles have unique physical and chemical properties, so they are continuously used in almost every field of nanotechnology and nanoscience. The motive behind this article is to investigate the Cross nanofluid model along with its chemical processes via auto catalysts, inclined magnetic field phenomena, heat generation, Brownian movement, and thermophoresis phenomena over a symmetric shrinking (stretching) wedge. The transport of heat via nonuniform heat sources/sinks, the impact of thermophoretic diffusion, and Brownian motion are considered. The Buongiorno nanofluid model is used to investigate the impact of nanofluids on fluid flow. Modeled PDEs are transformed into ODEs by utilizing similarity variables and handling dimensionless ODEs numerically with the adoption of MATLAB’s developed bvp4c technique. This software performs a finite difference method that uses the collocation method with a three-stage LobattoIIIA strategy. Obtained outcomes are strictly for the case of a symmetric wedge. The velocity field lessens due to amplification in the magneto field variable. Fluid temperature is amplified through the enhancement of Brownian diffusion and the concentration field improves under magnification in a homogeneous reaction effect.
publishDate 2023
dc.date.accessioned.none.fl_str_mv 2025-10-13T18:15:43Z
dc.date.available.none.fl_str_mv 2025-10-13T18:15:43Z
dc.date.issued.fl_str_mv 2023-05
dc.type.none.fl_str_mv info:eu-repo/semantics/article
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dc.identifier.doi.none.fl_str_mv https://doi.org/10.3390/sym15061145
url https://repositorio.unach.edu.pe/handle/20.500.14142/849
https://doi.org/10.3390/sym15061145
dc.language.iso.none.fl_str_mv eng
language eng
dc.relation.ispartof.none.fl_str_mv Symmetry
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spelling Mohd Nasir, Nor Ain AzeanySajid, TanveerJamshed, WasimCieza Altamirano, GilderEid, Mohamed R.Abdel Aziz ElSeabee, Fayza2025-10-13T18:15:43Z2025-10-13T18:15:43Z2023-05https://repositorio.unach.edu.pe/handle/20.500.14142/849https://doi.org/10.3390/sym15061145Exploration related to chemical processes in nanomaterial flows contains astonishing features. Nanoparticles have unique physical and chemical properties, so they are continuously used in almost every field of nanotechnology and nanoscience. The motive behind this article is to investigate the Cross nanofluid model along with its chemical processes via auto catalysts, inclined magnetic field phenomena, heat generation, Brownian movement, and thermophoresis phenomena over a symmetric shrinking (stretching) wedge. The transport of heat via nonuniform heat sources/sinks, the impact of thermophoretic diffusion, and Brownian motion are considered. The Buongiorno nanofluid model is used to investigate the impact of nanofluids on fluid flow. Modeled PDEs are transformed into ODEs by utilizing similarity variables and handling dimensionless ODEs numerically with the adoption of MATLAB’s developed bvp4c technique. This software performs a finite difference method that uses the collocation method with a three-stage LobattoIIIA strategy. Obtained outcomes are strictly for the case of a symmetric wedge. The velocity field lessens due to amplification in the magneto field variable. Fluid temperature is amplified through the enhancement of Brownian diffusion and the concentration field improves under magnification in a homogeneous reaction effect.The authors would like to thank Ministry of Higher Education Malaysia and National Defence University of Malaysia for supporting this research. 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