Applications of variable thermal properties in Carreau material with ion slip and Hall forces towards cone using a non-Fourier approach via FE-method and mesh-free study

Umar Nazir, Muhammad Sohail, Kanit Mukdasai, Abha Singh, Reham A. Alahmadi, Ahmed M. Galal, Sayed M. Eldin

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

This research highlights the utilization of two viscosity models to study the involvement of variable properties in heat and momentum transport in a rotating Carreau fluid past over a cone. The rheology of the Carreau material is assessed by the variable dynamic viscosity over the heating cone. The transport of momentum phenomenon is modeled by considering generalized Ohm’s law in Carreau liquid and thermal transport in derived by considering variable thermal conductivity, heat flux model. The considered model is derived in the form of nonlinear PDEs with boundary layer analysis. The nonlinear PDEs are converted into coupled ODEs by using approximate transformation and converted equations are solved numerically by finite element methodology. The impact of numerous parameters is displayed graphically, and their behavior is discussed in detail.

Original languageEnglish
Article number1054138
JournalFrontiers in Materials
Volume9
DOIs
StatePublished - 23 Dec 2022

Keywords

  • boundary layer theory
  • finite element method
  • heat transfer
  • nonlinear ODEs
  • variable properties

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