Department of Mathematics, Marri Laxman Reddy Institute of Technology and Management, Hyderabad, India
Research Article
Comparative Study on MHD Flow of Casson Fluid due to Stretching Surface in Suspension of Dust Graphene Nanoparticles: Entropy Generation
Author(s): Mani Ramanuja*, Vishwanath Savanur, Y. Rajesh Yadav, B. Srikantha Settee and A. Rushi Kesava
This study investigates the effects of the MHD flow via an exponentially extending surface of a Casson hybrid nanofluid made of graphene and carbon nanotubes with basic Casson fluid. The directions of flow were subjected to the standard Lorentz force. The velocity, temperature and concentration profiles are simulated using a mathematical model established under the flow suppositions by utilizing boundary exponentially layer surface approximations in equations using Partial Differentials (PDEs). The lie symmetry method was used to achieve a suitable performance of mathematical transformations. After applying the necessary transformations, Partial Differential Equations (PDEs) were transformed into Ordinary Differential Equations (ODEs). The dimensionless system was explained using a numerical with 4th-order Runge–Kutta method called bvp4c. Both tabular and depicted graphical repr.. Read More»
DOI:
10.37421/2168-9679.2025.14.600
Journal of Applied & Computational Mathematics received 1282 citations as per Google Scholar report