Diffusion: Macroscopic ViewExplores diffusion from a macroscopic perspective, emphasizing the derivation of the diffusion equation through mass conservation and fixed flux law.
The Finite Volume MethodExplores the finite volume method for numerical flow simulation, emphasizing steady diffusion in heat conduction and linear algebraic equations.
Turbulence: Numerical Flow SimulationExplores turbulence characteristics, simulation methods, and modeling challenges, providing guidelines for choosing and validating turbulence models.
Internal Heat Transfer EffectsCovers internal heat transfer effects in heterogeneous reactions, emphasizing dimensionless numbers and transport effects.
Example: 1D steady diffusionExplores the numerical simulation of steady convection-diffusion problems, discretization, boundary conditions, and algebraic system assembly.
Finite element methodsCovers finite element methods for solving diffusion problems in porous media, including meshing, interpolation, and weighted residuals.
Heat Transfer FundamentalsCovers the fundamentals of heat transfer, focusing on radiation, conduction, and convection, including boundary layers and Nusselt number.