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Decay Rate & Dyson SeriesExplores cross section, decay rate, and Dyson series in turbulence, emphasizing proper split and Lorentz invariance.
Kolmogorov Turbulence TheoryExplores Kolmogorov's turbulence theory, covering Navier-Stokes equations, conservation laws, energy budgets, and experimental laws of turbulence.
Incompressible Fluid MechanicsCovers dimensional analysis, pipe flow, boundary layers, and d'Alembert's paradox, emphasizing the importance of live participation in Zoom sessions.
Kalman-Hauad-Morning RelationDelves into deriving the Kalman-Hauad-Morning relation in stationary turbulence, emphasizing homogeneity and isotropy assumptions, and culminates in the common Howard-Mohnen relation.
Turbulence and SymmetryIntroduces turbulence and symmetry in fluid dynamics, exploring the effects of Reynolds number on flow patterns.
Reynolds DecompositionExplores the hierarchy of simulation approaches in fluid dynamics and the challenges in determining Reynolds stresses.
Turbulence: Decaying PhenomenaExplores the interpretation and decay of turbulence, dissipation scales, and the restoration of symmetries in fluid dynamics.