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No-slip condition
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Related lectures (9)
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Incompressible Fluid Mechanics: Viscosity and Hydrostatics
Explores viscosity, stress-strain relations, and force balances in incompressible fluid mechanics.
Deformations and Circulation
Covers deformations, rotation, and circulation in closed curves, as well as vorticity generation in fluid flow.
Viscous Flow in Newtonian Fluids
Explores viscous flow in Newtonian fluids, focusing on no-slip conditions and laminar shear flow equations.
Boundary layer: introduction
Introduces the boundary layer concept, discussing its impact on drag forces and the limitations of inviscid flow theory.
Hydrostatics: Understanding Fluid Behavior at Rest
Covers hydrostatics, focusing on fluids at rest and the behavior of pressure within them.
Fluid Mechanics: Introduction
Covers the basics of fluid mechanics, including properties of fluids and the ideal gas law.
Incompressible Fluid Mechanics
Explores incompressible fluid mechanics, covering viscosity, pressure distribution, force balance, and neglecting shearing faces.
Fluid Dynamics: Understanding Viscosity and Shear Stress
Explores fluid dynamics, focusing on viscosity and its role in fluid behavior.
Numerical Analysis of Incompressible Fluid Flow
Covers the software system Channelflow for numerical analysis of incompressible fluid flow in channel geometries, including spectral methods and invariant solutions.
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