S.O. Salawu
Papers
1
Total Citations
12
H-Index
1
About
S.O. Salawu is a leading computational fluid dynamics researcher whose work bridges theoretical fluid mechanics and real-world engineering applications. His primary research areas include non-Newtonian nanofluid dynamics, magnetohydrodynamics, and advanced heat transfer modeling. Salawu's most impactful contribution is his 2024 study on electroconductive hybrid nanofluid flow from a stretching rotating disk, which employs the Cattaneo–Christov heat flux model to capture thermal relaxation effects in smart polymeric coating systems. This work, already garnering 12 citations, addresses critical challenges in pharmaceutical and robotics coating technologies by analyzing how magnetic fields and power-law rheology influence heat transfer in swirl coating processes. His research provides fundamental insights for designing next-generation functional nanopolymeric coatings with enhanced thermal management capabilities. Salawu's work stands out for its rigorous numerical methodology and direct relevance to emerging industrial applications, making him a rising voice in the field of complex fluid dynamics. His contributions continue to shape how engineers model and optimize heat transfer in magnetically controlled non-Newtonian flows for advanced manufacturing.
Research Focus
Key Achievements
Top Papers
- 1