Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.

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The current investigation explains the chemical reaction and bioconvection process for an inclined magnetized Cross nanofluid over an inclined cylinder using a spectral relaxation approach. Additionally, the facts concerning swimming gyrotactic microorganisms, non-uniform thermal conductivity, and v...

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Detalles Bibliográficos
Autores: Rasool, Ghulam, Hussain Shah, Syed Zahir, Sajid, Tanveer, Jamshed, Wasim, Cieza Altamirano, Gilder, Keswani, Bright, Sandoval Núñez, Rafaél Artidoro, Sánchez-Chero, Manuel Jesus
Formato: artículo
Fecha de Publicación:2022
Institución:Universidad Nacional Autónoma de Chota
Repositorio:UNACH-Institucional
Lenguaje:inglés
OAI Identifier:oai:repositorio.unach.edu.pe:20.500.14142/873
Enlace del recurso:https://repositorio.unach.edu.pe/handle/20.500.14142/873
https://doi.org/10.3390/coatings12101560
Nivel de acceso:acceso abierto
Materia:Chemical reaction
https://purl.org/pe-repo/ocde/ford#1.04.00
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dc.title.none.fl_str_mv Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
title Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
spellingShingle Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
Rasool, Ghulam
Chemical reaction
https://purl.org/pe-repo/ocde/ford#1.04.00
title_short Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
title_full Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
title_fullStr Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
title_full_unstemmed Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
title_sort Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect.
author Rasool, Ghulam
author_facet Rasool, Ghulam
Hussain Shah, Syed Zahir
Sajid, Tanveer
Jamshed, Wasim
Cieza Altamirano, Gilder
Keswani, Bright
Sandoval Núñez, Rafaél Artidoro
Sánchez-Chero, Manuel Jesus
author_role author
author2 Hussain Shah, Syed Zahir
Sajid, Tanveer
Jamshed, Wasim
Cieza Altamirano, Gilder
Keswani, Bright
Sandoval Núñez, Rafaél Artidoro
Sánchez-Chero, Manuel Jesus
author2_role author
author
author
author
author
author
author
dc.contributor.author.fl_str_mv Rasool, Ghulam
Hussain Shah, Syed Zahir
Sajid, Tanveer
Jamshed, Wasim
Cieza Altamirano, Gilder
Keswani, Bright
Sandoval Núñez, Rafaél Artidoro
Sánchez-Chero, Manuel Jesus
dc.subject.none.fl_str_mv Chemical reaction
topic Chemical reaction
https://purl.org/pe-repo/ocde/ford#1.04.00
dc.subject.ocde.none.fl_str_mv https://purl.org/pe-repo/ocde/ford#1.04.00
description The current investigation explains the chemical reaction and bioconvection process for an inclined magnetized Cross nanofluid over an inclined cylinder using a spectral relaxation approach. Additionally, the facts concerning swimming gyrotactic microorganisms, non-uniform thermal conductivity, and variable decrease or increase in heat sources are taken together. Each profile is checked for inclined and orthogonal magnetic impact. Appropriate transformations made for conversion of nonlinear PDEs into systems of ODEs. For obtaining numerical results, a spectral relaxation approach is utilized, and graphs are plotted with each physical parameter attached. It is well established that the temperature field intensifies owing to an amplification of thermal conduction and Brownian diffusivity phenomena. The heat transfer rate amplifies owing to a magnification in magnetic parameter and thermal conductivity, but the velocity field diminishes as a result of magnification in the Weissenberg number and power law index. Amplification in the reaction rate constant parameter diminishes the concentration field. Activation energy is the key factor responsible for magnification in the concentration field. Furthermore, smooth agreement is found during comparison with the existing literature. Statistical analysis is also conducted for physical quantities.
publishDate 2022
dc.date.accessioned.none.fl_str_mv 2025-10-21T12:57:40Z
dc.date.available.none.fl_str_mv 2025-10-21T12:57:40Z
dc.date.issued.fl_str_mv 2022-10
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/coatings12101560
url https://repositorio.unach.edu.pe/handle/20.500.14142/873
https://doi.org/10.3390/coatings12101560
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language eng
dc.relation.ispartof.none.fl_str_mv Coatings
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dc.publisher.none.fl_str_mv Multidisciplinary Digital Publishing Institute
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spelling Rasool, GhulamHussain Shah, Syed ZahirSajid, TanveerJamshed, WasimCieza Altamirano, GilderKeswani, BrightSandoval Núñez, Rafaél ArtidoroSánchez-Chero, Manuel Jesus2025-10-21T12:57:40Z2025-10-21T12:57:40Z2022-10https://repositorio.unach.edu.pe/handle/20.500.14142/873https://doi.org/10.3390/coatings12101560The current investigation explains the chemical reaction and bioconvection process for an inclined magnetized Cross nanofluid over an inclined cylinder using a spectral relaxation approach. Additionally, the facts concerning swimming gyrotactic microorganisms, non-uniform thermal conductivity, and variable decrease or increase in heat sources are taken together. Each profile is checked for inclined and orthogonal magnetic impact. Appropriate transformations made for conversion of nonlinear PDEs into systems of ODEs. For obtaining numerical results, a spectral relaxation approach is utilized, and graphs are plotted with each physical parameter attached. It is well established that the temperature field intensifies owing to an amplification of thermal conduction and Brownian diffusivity phenomena. The heat transfer rate amplifies owing to a magnification in magnetic parameter and thermal conductivity, but the velocity field diminishes as a result of magnification in the Weissenberg number and power law index. Amplification in the reaction rate constant parameter diminishes the concentration field. Activation energy is the key factor responsible for magnification in the concentration field. Furthermore, smooth agreement is found during comparison with the existing literature. 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