Analysis examines tetra-hybrid nanofluid flow dynamics in porous sliders, indicating significant thermal and flow impacts from magnetic fields and radiation.
Key Points
The aim is to analyze how magnetic fields and thermal radiation affect the flow of tetra-hybrid nanofluid in a porous slider.
Used similarity variables to convert nonlinear partial differential equations into ordinary differential equations.
Numerically solved the equations using the Charlier polynomial collocation method.
Graphically depicted the effects of dimensionless parameters on flow and temperature.
Increased magnetic field reduces the velocity profile of the fluid.
Nonlinear thermal radiation has a greater impact on thermal profiles compared to linear radiation.
Higher heat sink/source parameters increase the temperature profile.