EMHD Micropolar Casson Nanofluid Flow on an Inclined Surface Under Permeability
摘要
Today, the majority of industries have benefited greatly from the use of EMHD of Micropolar Casson Nanofluids. The significance of the Micropolar Casson Nano Fluids study arises from its numerous potential uses in engineering, diverse industries, and medicine. The investigation of the movement of electrically charged fluids in an electromagnetic field is known as magnetohydrodynamics, whereas micropolar casson nanofluids are a blend of nanoparticles and fluids that are not Newtonian. Magnetomicropolar electrically conducts nanofluid motion over a slanting plane to transfer mass and heat along with boundary conditions and dimensionless parameters. This section focuses on the Permeability, Brinkman, and Dufour factors and how they impact the flow rate of EMHD Micropolar Casson Nanofluid. Thus, the designed governing equations in the form of partial differential equations (PDE) are transformed into ordinary differential equations (ODE) with the necessary parameters, numerically solved, and then provided with a graphical representation in MATLAB using the shooting technique in the RK method of fourth order.