Computational analysis of radiative micropolar fluid flow over a curved stretching sheet with viscous dissipation
摘要
This study aims to investigate the mass and heat transmission in a magnetohydrodynamic micropolar fluid over a curved stretching sheet. It focuses on the combined effects of thermal radiation, chemical reaction and porosity via velocity, temperature, concentration and microrotation profiles. Curvilinear coordinates are employed to delineate the fundamental equations of the model. Through suitable transformations, the flow governing partial differential equations are converted into a system of ordinary differential equations accompanied by relevant boundary conditions. These reduced differential equations are resolved numerically with the bvp4c solver in MATLAB package. The significance of the controlling parameters on mass and heat transport characteristics is presented and analyzed graphically. In the