Induced magnetic transportation of Soret and dissipative effects on Casson fluid flow towards a vertical plate with thermal and species flux conditions

Author:

Shamshuddin M. D.1,Sharma Ram Prakash2ORCID,Ghaffari A.3,Allipudi Subba Rao4

Affiliation:

1. Department of Mathematics, School of Sciences, SR University, Warangal 560371, Telangana, India

2. Department of Mechanical Engineering, NIT Arunachal Pradesh, Jote, Papum Pare District, Arunachal Pradesh 791113, India

3. Department of Mathematics, University of Education, Lahore, Attock Campus 43600, Pakistan

4. Research Scholar, Department of Basic & Applied Science, National Institute of Technology, Jote, Papum Pare District, Arunachal Pradesh 791113, India

Abstract

This research offers an analysis of the mixed convective transient boundary film Casson fluid stream and thermal distribution through a vertical sheet. Viscous dissipation and the Soret effect are introduced to support the flow in stimulating heat capacity. Unlike typical investigations, the present flow-formulated model is done to capture an induced magnetic field. The Boussinesq approximation is used to describe the nonlinear formulated partial derivatives governing the heat transfer fluid that is non-dimensionalized using suitable dimensionless quantities. The transformed partial derivative model is numerically solved via the spectral Chebyshev technique and the results of shear stress, current density, Nusselt number, and mass gradient are tabulated. The role of numerous terms on dimensionless flow rate, induced velocity, and heat transfer with species distribution is discussed in a very effective way. Velocity and temperature of liquid decline as boosting the material parameter. Enhancing values [Formula: see text] favor the flow momentum and oppose the temperature profile.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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