Applications of magnetized blood based hybrid nanofluid in biotechnology and medical sciences: An investigation of chemical reactive flow and heat source using classical and modified Hamilton–Crosser models
Study demonstrates critical effects of nanofluid parameters on heat transport in medical applications, suggesting improvements in targeted drug delivery.
Key Points
To explore the properties and behavior of magnetohydrodynamic flows in hybrid nanofluids for biomedical applications.
Analyzed flow of hybrid nanofluid in a stenosed artery using chemical reactivity and thermal effects.
Incorporated features like Joule heating and internal heat generation in the model.
Used similarity transformations to convert governing equations into nonlinear ordinary differential equations for numerical resolution in MATLAB.
Increased thermal radiation and internal heat generation raise the temperature of the fluid.
Higher Schmidt and chemical-reaction parameters reduce concentration levels.
The modified Hamilton–Crosser model showed consistently higher Nusselt numbers compared to the classical model.