Model‐based comparative study of magnetohydrodynamics unsteady hybrid nanofluid flow between two infinite parallel plates with particle shape effects
Hangzhou Normal University · Huzhou University · +4 more institutions
Abstract
The present study examines the impact of unsteady viscous flow in a squeezing channel. Silver–gold hybrid nanofluid particles with different shapes are inserted in the base fluid engine oil. Flow and heat transfer mechanism is detected in the presence of magnetohydrodynamics between the two parallel infinite plates. The thermal conductivity models, that is, Yamada–Ota and Hamilton–Crosser models are used to investigate various shapes (Blade, platelet, cylinder, and brick) of hybrid nanoparticles. The model is made up of paired high nonlinear partial differential equations that are then transformed into ordinary differential equations which are coupled and strong nonlinear using the boundary layer…
Citation impact
- FWCI
- 23.53
- Percentile
- 100%
- References
- 55
Authors
4Topics & keywords
- Nanofluid
- Mechanics
- Nonlinear system
- Cylinder
- Flow (mathematics)
- Partial differential equation
- Boundary value problem
- Magnetohydrodynamics