Numerical Simulation of Mass and Heat Transport Phenomena of
Hydromagnetic Flow of Casson Fluid with Sinusoidal Boundary Conditions
Abstract
A computational study of Non-Newtonian (Casson) free convective MHD
unsteady fluid flow has been highlighted in this article with mass and
heat transit property through a vertical infinite porous plate. A
sinusoidal boundary conditions have been considered as well as chemical
reaction and thermal radiation. Using a collection of non-dimensional
variables, the flow related equations are also turned into
non-dimensional form. The EFDM algorithm is employed in order to arrive
at a numerical solution via Compaq Visual Fortran 6.6a. The reliability
of the numerical solution has been confirmed using stability testing and
convergence analysis. The whole system is convergent at the value of and
. A visual depiction of the impact of the pertinent factors on
dimensionless velocity, temperature, and concentration profiles is
displayed along with thorough explanations and graphical representation
as well as tabular representation. Key finding of this work is that when
the magnetic component is regarded in sinusoidal form, it greatly
affects the heat transfer factors of Casson fluid and the heat rises as
the results of heat source parameter, radiation parameter and Eckert
number. It is also found that the Sherwood number is increased as the
impact of chemical reaction parameter and the Lewis number, also the
skin friction is decreased as the influence of porosity term got
accelerated. As a last step in verifying the earlier study, the present
results are contrasted with the results that were previously published.