Hall effects and entropy generation applications for peristaltic flow of modified hybrid nanofluid with electroosmosis phenomenon

Kamel Guedri, Tahmoor Bashir, A. Abbasi, Waseh Farooq, Sami Ullah Khan, M. Ijaz Khan, Mohammed Jameel, Ahmed M. Galal

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

The electroosmotic peristaltic flow of modified hybrid nanofluid in presence of entropy generation has been presented in this thermal model. The Hall impact and thermal radiation with help of nonlinear relations has also been used to modify the analysis. The assumed flow is considered due to a non-uniform trapped channel. The properties of modified hybrid nanofluid model are focused with interaction of three distinct types of nanoparticles namely copper (Cu), silver (Ag) and aluminum oxide (Al2O3). The mathematical modeling and significances of entropy generation and Bejan number are identified. With certain flow assumptions, the governing equations are attained for optimized peristaltic electroosmotic problem. Widely used assumptions of long wave length and low Reynolds number reduced the governing equations in ordinary differential equations. The ND solver is flowed for the solution process. The physical significant of results is observed by assigning the numerical values to parameters.

Original languageEnglish
Article number100614
JournalJournal of the Indian Chemical Society
Volume99
Issue number9
DOIs
StatePublished - Sep 2022

Keywords

  • Electroosmotic peristaltic flow
  • Entropy generation
  • Hall effect
  • Modified hybrid nanofluid
  • Non-uniform trapped channel

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