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Three-Dimensional Rotating Flow of MHD Jeffrey Fluid Flow between Two Parallel Plates with Impact of Hall Current

Author

Listed:
  • Mehreen Fiza
  • Abdelaziz Alsubie
  • Hakeem Ullah
  • Nawaf N. Hamadneh
  • Saeed Islam
  • Ilyas Khan
  • Ahmad Zeeshan

Abstract

This article deals with three-dimensional non-Newtonian Jeffrey fluid in rotating frame in the presence of magnetic field. The flow is studied in the application of Hall current, where the flow is assumed in steady states. The upper plate is considered fixed, and the lower is kept stretched. The fundamental equations are transformed into a set of ordinary differential equations (ODEs). A homotopy technique is practiced for a solution. The variation in the skin friction and its effects on the velocity fields have been examined numerically. The effects of physical parameters are discussed in various plots.

Suggested Citation

  • Mehreen Fiza & Abdelaziz Alsubie & Hakeem Ullah & Nawaf N. Hamadneh & Saeed Islam & Ilyas Khan & Ahmad Zeeshan, 2021. "Three-Dimensional Rotating Flow of MHD Jeffrey Fluid Flow between Two Parallel Plates with Impact of Hall Current," Mathematical Problems in Engineering, Hindawi, vol. 2021, pages 1-9, March.
  • Handle: RePEc:hin:jnlmpe:6626411
    DOI: 10.1155/2021/6626411
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    Cited by:

    1. Muhammad Kamran Alam & Khadija Bibi & Aamir Khan & Unai Fernandez-Gamiz & Samad Noeiaghdam, 2022. "The Effect of Variable Magnetic Field on Viscous Fluid between 3-D Rotatory Vertical Squeezing Plates: A Computational Investigation," Energies, MDPI, vol. 15(7), pages 1-21, March.

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