Covers the software system Channelflow for numerical analysis of incompressible fluid flow in channel geometries, including spectral methods and invariant solutions.
Explores the distinction between Eulerian and Lagrangian descriptions of fluid flow through velocity field concepts and different types of lines visualization.
Explores the fundamentals of fluidics, covering Reynolds number, vortices, swimming, sedimentation, pressure drop, flow profiles, lift forces, and gas flows.
Delves into deriving the Kalman-Hauad-Morning relation in stationary turbulence, emphasizing homogeneity and isotropy assumptions, and culminates in the common Howard-Mohnen relation.