MHD and Cross-Diffusion Fluid Flow for Free Convection of Casson Fluid Due to A Stretching Cylinder

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Authors

  • Department of Mathematics, Sir M. Visvesvaraya Institute of Technology, Bengaluru – 560064, Karnataka ,IN
  • Department of Mathematics, Vemana Institute of Technology, Bengaluru – 560034, Karnataka ,IN
  • Department of Mathematics, Ramaiah Institute of Technology, Bengaluru – 560054, Karnataka ,IN
  • Department of Mathematics, Ramaiah Institute of Technology, Bengaluru – 560054, Karnataka ,IN
  • Department of Mathematics, Nitte Menakshi Institute of Technology, Bengaluru – 560064, Karnataka ,IN

DOI:

https://doi.org/10.18311/jmmf/2023/41759

Keywords:

Casson Fluid, Free Convection, Soret and Dufour Effect

Abstract

The present communication is dedicated for understanding the control of Lorentz force, Soret, Dufour effect and body force on the convection-free flow of Casson fluid on heat and mass transfer due to a stretching cylinder. For the considered two-dimensional physical configuration, a non-linear partial differential equation which are coupled are derived as a governing equation to study the behaviour of concentration, temperature and velocity which in turn modified to differential equations which are ordinary and non-linear by employing a suitable similarity transformation. A well-known shooting technique is employed to understand the characteristic variations of the fluid flow with the influence of some of the non-dimensional parameters viz., Schmidt’s, Reynolds number, Soret and Dufour parameters, Hartmann number, Prandtl number. These parameters take a vital role in controlling fluid flow, heat and mass transfer in various real problem applications. The present results are contrast with the results of earlier study as a particular case and good agreement is found.

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Published

2023-12-01

How to Cite

Shuba, R. N., Jayalakshmamma, D. V., Dinesh, P. A., Sushma, S., & Sushma, T. C. (2023). MHD and Cross-Diffusion Fluid Flow for Free Convection of Casson Fluid Due to A Stretching Cylinder. Journal of Mines, Metals and Fuels, 71(12), 2741–2746. https://doi.org/10.18311/jmmf/2023/41759

 

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