Arterial Flow ModelingCovers arterial flow modeling, shear stress, boundary conditions, viscosity impact, and non-Newtonian blood flow.
Understanding Viscosity: Newtonian FluidsExplores viscosity in Newtonian fluids, discussing shear stress, shear strain rate, and compressibility, with examples of shear thickening and shear thinning behaviors.
Turbulence: Numerical Flow SimulationExplores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Fluids and ElectromagnetismExplores fluid flow, Bernoulli's theorem violation, viscosity, and necessary force for rotating cylinders with different fluids.
Rheology of SuspensionsExplores the rheology of suspensions, covering viscosity, particle interactions, and dynamic effects.
Flow ClassificationsExplores classifications of flow based on stability, fluctuations, compressibility, and viscosity.
Introduction to Fluid MechanicsCovers the basics of fluid mechanics, including fluid properties, pressure, viscosity, and fluid behavior at rest and in motion.
Fluid Dynamics: Viscous FlowExplores viscous fluid dynamics, including drag force, lift force, turbulence, viscosity, and the Magnus effect.