Efficacy of a Modulated Viscosity-dependent Temperature/nanoparticles Concentration Parameter on a ‎Nonlinear Radiative Electromagneto-nanofluid Flow along an Elongated Stretching Sheet

The purpose of the present communication is to investigate the flow of a radiative electromagnetic-Casson nanofluid past a stretching sheet under the impacts of a chemical reaction and nonlinear thermal radiation. To enrich the blood flow, a modulated viscosity/thermal conductivity dependent tempera...

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Published inJournal of applied and computational mechanics Vol. 9; no. 3; pp. 848 - 860
Main Authors Ji-Huan He, Nasser S. Elgazery, Khaled Elagamy, Nader Y. Abd Elazem
Format Journal Article
LanguageEnglish
Published Shahid Chamran University of Ahvaz 01.07.2023
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Abstract The purpose of the present communication is to investigate the flow of a radiative electromagnetic-Casson nanofluid past a stretching sheet under the impacts of a chemical reaction and nonlinear thermal radiation. To enrich the blood flow, a modulated viscosity/thermal conductivity dependent temperature/nanoparticles concentration parameter is included in the governing equations. The system of PDEs is transformed to ODEs by invoking similarity transformations and then solved numerically by the well- known fourth-order Runge-Kutta integration scheme based on shooting approach. The main factors affecting the Casson fluid’s temperature profiles are revealed.
AbstractList The purpose of the present communication is to investigate the flow of a radiative electromagnetic-Casson nanofluid past a stretching sheet under the impacts of a chemical reaction and nonlinear thermal radiation. To enrich the blood flow, a modulated viscosity/thermal conductivity dependent temperature/nanoparticles concentration parameter is included in the governing equations. The system of PDEs is transformed to ODEs by invoking similarity transformations and then solved numerically by the well- known fourth-order Runge-Kutta integration scheme based on shooting approach. The main factors affecting the Casson fluid’s temperature profiles are revealed.
Author Nasser S. Elgazery
Khaled Elagamy
Nader Y. Abd Elazem
Ji-Huan He
Author_xml – sequence: 1
  fullname: Ji-Huan He
  organization: National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, Suzhou, China
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  fullname: Nasser S. Elgazery
  organization: Department of Mathematics, Faculty of Education, Ain Shams University,‎ El-Makrizy St, Roxy, Heliopolis: 11566, Cairo, Egypt‎
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  fullname: Khaled Elagamy
  organization: Department of Mathematics, Faculty of Education, Ain Shams University,‎ El-Makrizy St, Roxy, Heliopolis: 11566, Cairo, Egypt‎
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  fullname: Nader Y. Abd Elazem
  organization: Department of Basic Science, Cairo Higher Institute for Engineering,‎ Computer Science and Management, New Cairo, Cairo, Egypt‎
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Snippet The purpose of the present communication is to investigate the flow of a radiative electromagnetic-Casson nanofluid past a stretching sheet under the impacts...
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SubjectTerms electromagnetic casson nanofluid
nonlinear radiation
shooting ‎technique
stretching sheet
variable viscosity/thermal conductivity
Title Efficacy of a Modulated Viscosity-dependent Temperature/nanoparticles Concentration Parameter on a ‎Nonlinear Radiative Electromagneto-nanofluid Flow along an Elongated Stretching Sheet
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