Stability Analysis for Dual Solutions of Casson Tetrahybrid Nanofluid Flow with Homogenous–Heterogenous Reactions in a Porous Curved Surface
摘要
This study focuses on enhancing thermal conductivity and improving heat transfer, which are critical for applications in industrial processes, engineering systems, and electronics cooling. The investigation presents a stability analysis of dual solutions for Casson tetra-hybrid nanofluid flow over a porous, curved surface with homogeneous and heterogeneous reactions. By employing a non-Newtonian fluid model coupled with the Tiwari-Das approach, the study examines the effects of various factors including nanoparticle volume fraction, Darcy-Forchheimer drag, non-linear mixed convection, magnetic field, mass suction/injection, slip, and convective boundary conditions on velocity, temperature, and concentration profiles, as well as on skin friction and the Nusselt number. The governing equations are transformed via similarity transformations into a system of ordinary differential equations and solved numerically using the MATLAB