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Lecture
Meshing: Elements and Types
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Turbulence: Numerical Flow Simulation
Explores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Finite element methods
Covers finite element methods for solving diffusion problems in porous media, including meshing, interpolation, and weighted residuals.
Finite Element Modeling: Common Pitfalls
Explores common pitfalls in finite element modeling, covering modeling, mesh generation, matrix conditioning, and result interpretation.
Finite Elements: Elasticity and Variational Formulation
Explores finite element methods for elasticity problems and variational formulations, emphasizing admissible deformations and numerical implementations.
Convection Diffusion: Equations and Finite Difference Methods
Covers the convection diffusion equation and its numerical approximation methods.
Numerical Flow Simulation: Methods and Applications
Explores numerical methods for flow simulation, including finite element, spectral, particle, and lattice Boltzmann methods.
Numerical Modelling of the Atmosphere
Focuses on numerical modelling of atmospheric processes to predict weather and climate phenomena, covering key concepts and methods.