Effect of Slip Condition on Thin Film Flow on a Vertical Cylinder for Lift of Electrically Conducting Power Law Fluid

Authors

  • K. N. Memon Department of Mathematics and Statistics, QUEST, Nawabshah, Sindh, Pakistan
  • Rashid Solangi Department of BSRS, Mehran University of Engineering Technology, Jamshoro, Pakistan
  • M. Afzal Soomro Department of Mathematics and Statistics, QUEST, Nawabshah, Sindh, Pakistan

DOI:

https://doi.org/10.62270/jirmcs.v2i1.18

Keywords:

Thin film flow, electrically conducting PLF, Slip condition, Perturbation solution

Abstract

This work is made to explore the problem concerning thin film flow for lift while considering steady, incompressible, isothermal, electrically conducting Power Law Fluid (PLF) on a vertically standing cylinder with slip conditions. The non-linear ordinary differential equation that is ordinary has been obtained using the continuity and momentum equations by using the Perturbation method, focusing on free space and slip boundary conditions. The exact solution concerning the PLF model is obtained from these proposed models on substitution of slip parameter  = 0 and ε=0. A series solution has been obtained, which gives us the velocity profile of the fluid, the flow rate, and the average velocity of fluid flow.

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Published

2023-06-30

How to Cite

[1]
K. N. Memon, R. Solangi, and M. A. Soomro, “Effect of Slip Condition on Thin Film Flow on a Vertical Cylinder for Lift of Electrically Conducting Power Law Fluid”, jirmcs, vol. 2, no. 1, pp. 76–83, Jun. 2023, doi: 10.62270/jirmcs.v2i1.18.