Lec 24: Discretization vorticity-stream function equations using FDM
26
Lec 25: Boundary conditions for flow problems
27
Lec 26: Solutions of vorticity-stream function equations
28
Lec 27: Solution of Navier-Stokes Equation using FDM
29
Lec 28: Solution of Navier-Stokes Equation using FDM (Continued)
30
Lec 29: Introduction to finite volume method
31
Lec 30: Finite volume discretization of steady diffusion equation
32
Lec 31: Finite volume discretization of unsteady diffusion equation
33
Lec 32: Finite volume discretization of steady convection- diffusion equation
34
Lec 33: Finite volume discretization of unsteady convection- diffusion equation
35
Lec 34: Convection Schemes
36
Lec 35: Solution of Navier-Stokes Equations using FVM
37
Lec 36: Solution of Navier-Stokes Equations using FVM - II
38
Lec 37: Boundary Conditions
Description:
COURSE OUTLINE: This is an introductory course on computational fluid dynamics (CFD). This course will primarily cover the basics of computational fluid dynamics starting from the classification of partial differential equations, linear solvers, finite difference method and finite volume method for discretizing Laplace equation, convective-diffusive equation & Navier-Stokes equations. The course will help faculty members, students and researchers in the field to get an overview of the concepts in CFD
Computational Fluid Dynamics for Incompressible Flows