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Turbulence: Decaying PhenomenaExplores the interpretation and decay of turbulence, dissipation scales, and the restoration of symmetries in fluid dynamics.
Turbulence ModelingExplores turbulence characteristics, modeling challenges, and various numerical simulation methods.
Boundary Layer ConceptsExplores boundary layer concepts, viscosity impact, drag and lift forces, and dimensional pipe flow analysis.
Velocity Boundary Layer EquationsFocuses on velocity boundary layer equations in laminar flow and covers mass and momentum conservation, Navier-Stokes equations, and the Reynolds number.
Poiseuille & ResistanceExplores Poiseuille's law, pressure-velocity relation, wall shear stress, resistances, Bernoulli's equation, and turbulence in fluid dynamics.
Turbulence and SymmetryIntroduces turbulence and symmetry in fluid dynamics, exploring the effects of Reynolds number on flow patterns.
Free Convection CorrelationsCovers the fundamentals of free convection and correlations for heat transfer between a solid and a fluid in motion at different temperatures.
Scale-by-scale Energy BudgetExplores the scale-by-scale energy budget in fluid dynamics, emphasizing energy redistribution between different scales and conservation laws.