Magneto-Bioconvective Stagnation Point Flow of a Three-Dimensional Casson Nanofluid Over a Rotating Riga Sheet with Exponential Heat Source: Homotopy Methodology Analysis
Randomized trial examines how magnetic fields and heat sources affect Casson nanofluid flow behavior, suggesting applications in advanced technologies.
Key Points
This study aims to analyze the effects of combined physical mechanisms on magneto-bioconvective flow of Casson nanofluid.
Converted nonlinear partial differential equations to dimensionless ordinary differential equations.
Used similarity transformations for analysis.
Applied Homotopy Analysis Method to obtain analytical solutions.
Increased Casson fluid parameter and magnetic parameter leads to a decrease in velocity field.
Higher Hartmann numbers enhance fluid motion due to electromagnetic forces.
Increased temperature distribution correlated with stronger heat sources and higher Biot number.