Analysis reveals that hybrid nanofluid flow improves heat transfer in renewable energy and electronics, suggesting potential for practical applications.
Key Points
The aim is to analyze the thermal transport behavior of hybrid nanofluid flow and its influencing factors.
Examined the impact of joule heating and velocity slip on flow characteristics.
Developed a mathematical model using boundary-layer theory and partial differential equations.
Utilized local non-similarity approaches and MATLAB's bvp4c tool for equation solutions.
Hybrid nanoparticles significantly enhance heat transfer efficiency.
Results presented using graphical and tabular formats.