• Basics of Computational Fluid Dynamics
• Applications of CFD in engineering
• Overview of ANSYS Workbench
• ANSYS Fluent and CFX overview
• CFD workflow
• Industry use cases
• Governing equations
• Continuity equation
• Momentum equation
• Energy equation
• Flow regimes
• Creating a CFD project
• Linking geometry and mesh
• Setting up analysis system
• Units and solver settings
• Project management basics
• Simplifying geometry
• Creating fluid domains
• Defining inlets and outlets
• Named selections
• Geometry validation
• Structured vs unstructured mesh
• Inflation layers
• Mesh refinement techniques
• Mesh quality metrics
• Grid independence study
• Pressure-based solver
• Density-based solver
• Steady vs transient analysis
• Defining material properties
• Setting boundary conditions
• Laminar vs turbulent flow
• Turbulence models overview
• k-epsilon model
• k-omega model
• SST model
• Model selection criteria
• Convection
• Radiation basics
• Thermal boundary conditions
• Conjugate heat transfer
• Thermal simulation setup
• Volume of Fluid (VOF) model
• Eulerian model
• Mixture model
• Practical applications
• Result interpretation
• Sliding mesh
• Moving reference frames
• Overset mesh basics
• Practical examples
• Solver considerations
• Vector plots
• Streamlines
• Pressure and velocity analysis
• Report generation
• Validation techniques
• Supersonic flow basics
• Combustion modeling
• Species transport
• Radiation models
• Advanced solver options
• Design points
• Sensitivity analysis
• Optimization basics
• Performance improvement
• Practical workflow







